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Confocal Fluorescent Imaging System Market Market Size, Share, and Comprehensive Industry Analysis 2024-2032
Confocal Fluorescent Imaging System Market Insights
Reed Intelligence has recently published a new report titled ""Global Confocal Fluorescent Imaging System Market."" This comprehensive report delves into crucial aspects of the Bluetooth fingerprint scanner industry, offering valuable insights for both established and new market participants. It covers key factors such as market share, profitability, production, sales, manufacturing processes, advertising strategies, technological innovations, major industry players, and regional market breakdowns, among other important details.
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Confocal Fluorescent Imaging System Market Share by Key Players
Olympus
Nikon
Leica
ZEISS
Motic
PicoQuant
Bruker
PTI
NT-MDT
Sunny
COIC
Novel Optics
Shanghai Optical Instrument
The report also covers several important factors including strategic developments, government regulations, market analysis, and the profiles of end users and target audiences. Additionally, it examines the distribution network, branding strategies, product portfolios, market share, potential threats and barriers, growth drivers, and the latest industry trends.
Confocal Fluorescent Imaging System Market Segmentation
The report on the Global Confocal Fluorescent Imaging System Market offers a thorough segmentation by type, applications, and regions. It details production and manufacturing data for each segment over the forecast period from 2024 to 2032. The application segment focuses on the different uses and operational processes within the industry. Analyzing these segments will provide insights into the various factors contributing to market growth and their significance.
The report is segmented as follows:
Segment by Type
Laser Scanning Confocal
Digital Confocal
Segment by Application
Life Sciences
Materials Science
Confocal Fluorescent Imaging System Market Segmentation by Region
North America
U.S
Canada
Europe
Germany
UK
France
Asia Pacific
China
India
Japan
Australia
South Korea
Latin America
Brazil
Middle East & Africa
UAE
Kingdom of Saudi Arabia
South Africa
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The market research report on the Global Confocal Fluorescent Imaging System Market has been thoughtfully compiled by examining a range of factors that influence its growth, including environmental, economic, social, technological, and political conditions across different regions. A detailed analysis of data related to revenue, production, and manufacturers provides a comprehensive view of the global landscape of the Confocal Fluorescent Imaging System Market. This information will be valuable for both established companies and newcomers, helping them assess the investment opportunities in this growing market.
Key Highlights
The report delivers essential insights into the Global Confocal Fluorescent Imaging System Market.
The report covers data for the years 2024-2032, highlighting key factors that impact the market during this period.
It emphasizes technological advancements, government regulations, and recent market developments.
The report will explore advertising and marketing strategies, examine market trends, and provide detailed analysis.
The report includes growth analysis and forecasts, with predictions extending up to the year 2032.
The report highlights a detailed statistical analysis of the key players in the market.
It presents a comprehensive and extensively researched overview of the market.
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#Confocal Fluorescent Imaging System Market Size#Confocal Fluorescent Imaging System Market Share#Confocal Fluorescent Imaging System Market Growth#Confocal Fluorescent Imaging System Market Trends#Confocal Fluorescent Imaging System Market Players
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The Global Optical Microscopes Market is projected to grow from USD 2,597.68 million in 2023 to an estimated USD 4,211.68 million by 2032, with a compound annual growth rate (CAGR) 5.59 %.from 2024 to 2032.The optical microscopes market has been witnessing significant growth due to advancements in technology, increasing demand from various end-user industries, and the rising importance of research and development activities across the globe. Optical microscopes, which use visible light and a system of lenses to magnify images of small objects, are essential tools in numerous fields, including biology, medicine, materials science, and nanotechnology.
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Market Overview The global optical microscopes market is segmented based on product type, application, end-user, and region. Product types include compound microscopes, stereo microscopes, digital microscopes, and others. Applications range from life sciences and healthcare to materials science, nanotechnology, and semiconductor research. End-users encompass academic institutions, research laboratories, hospitals, and industries.
Growth Drivers 1. Technological Advancements: The continuous evolution in optical microscope technology, such as super-resolution microscopy and advancements in digital imaging, has significantly enhanced the capabilities of these instruments. Innovations like fluorescence microscopy, phase contrast microscopy, and confocal microscopy are driving the market forward.
2. Increasing Research and Development: There is a growing emphasis on R&D activities in sectors like biotechnology, pharmaceuticals, and nanotechnology. Optical microscopes are indispensable in these fields for analyzing biological samples, understanding cellular structures, and studying materials at the nanoscale.
3. Healthcare Sector Growth: The expanding healthcare sector, especially in emerging economies, is a major contributor to the optical microscopes market. These microscopes are crucial for diagnostic purposes, surgical procedures, and research into diseases and treatments.
4. Educational Institutions: Academic and research institutions are increasingly adopting advanced optical microscopes to facilitate better learning and research. Governments and private organizations are also funding projects that involve microscopy, further boosting market growth.
Market Challenges 1. High Costs: Advanced optical microscopes can be expensive, which may limit their adoption, especially in small-scale laboratories and institutions with budget constraints.
2. Technical Complexity: The sophisticated nature of modern optical microscopes requires skilled personnel for operation and maintenance, posing a challenge in regions with a shortage of trained professionals.
3. Alternative Technologies: The emergence of alternative imaging technologies, such as electron microscopy and atomic force microscopy, can impact the market. These alternatives offer higher resolution and different capabilities, which might be preferred in specific applications.
Regional Insights 1. North America: North America holds a significant share of the optical microscopes market, driven by extensive research activities, a robust healthcare system, and the presence of key market players. The United States, in particular, is a major contributor due to its advanced research infrastructure and substantial funding for scientific research.
2. Europe: Europe is another prominent region, with countries like Germany, the UK, and France leading in research and development. The European Union’s initiatives to promote scientific research and innovation also support market growth.
3. Asia-Pacific: The Asia-Pacific region is experiencing rapid growth, propelled by increasing investments in healthcare, expanding research facilities, and rising educational standards. Countries like China, Japan, and India are emerging as significant markets due to their focus on scientific research and technological advancements.
4. Rest of the World: Other regions, including Latin America, the Middle East, and Africa, are also witnessing growth in the optical microscopes market. Improvements in healthcare infrastructure and rising research activities are driving the demand in these regions.
Future Prospects The future of the optical microscopes market looks promising, with ongoing technological advancements expected to further enhance the capabilities and applications of these instruments. The integration of artificial intelligence (AI) and machine learning (ML) in microscopy is anticipated to revolutionize the field, enabling automated image analysis and more precise measurements.
Moreover, the development of portable and user-friendly microscopes will likely expand their use in field research, education, and point-of-care diagnostics. Collaborations between academic institutions, research organizations, and industry players will also play a crucial role in driving innovation and market growth.
Key players
Carl Zeiss AG
Leica Microsystems
Nikon Corporation
Olympus Corporation
Bruker Corporation
JEOL Ltd.
Thermo Fisher Scientific Inc.
Hitachi High-Tech Corporation
FEI Company (acquired by Thermo Fisher Scientific)
Keyence Corporation
Segments
By Product
Compound Microscopes
Stereo Microscopes
Digital Microscopes
Others
By End User
Healthcare and Life Sciences
Material Science and Semiconductor Manufacturing
Academic and Research Institutes
Others
By Application
Biological Research
Industrial Inspection
Material Analysis
Others
By Region
North America
The U.S.
Canada
Mexico
Europe
Germany
France
The U.K.
Italy
Spain
Rest of Europe
Asia Pacific
China
Japan
India
South Korea
South-east Asia
Rest of Asia Pacific
Latin America
Brazil
Argentina
Rest of Latin America
Middle East & Africa
GCC Countries
South Africa
Rest of Middle East and Africa
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The Confocal Microscope Market To Uphold Consistence With A CAGR Of 3.3%
According to the latest market report published by Persistence Market Research titled ‘Global Confocal Microscope Market: Global Industry Analysis 2013 – 2017 and Forecast, 2018 – 2028,’ the global confocal microscope market is projected to reach US$ 1,310.5 Mn by the end of 2028 and grow at a CAGR of 3.3% during the forecast period.
Global Confocal Microscope Market: Dynamics
Confocal microscope is a special form of standard fluorescence microscope. Confocal microscopy is different from the conventional wide field fluorescence microscopy, in which the optical path is designed to place in front of the image detector (photomultiplier tube or camera), and an aperture (opening) at a point where the image is focused in conjunction with the focal plane of the image.
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Company Profiles
Olympus Corporation
Leica Microsystem (Sub. Danaher)
ZEISS Group (Carl Zeiss Meditec AG)
Nikon Corporation
Bruker Corporation
Bio-Rad Laboratories, Inc
Oxford Instruments plc
Thorlabs, Inc.
Confocal.nl
ISS.Inc
Others.
Government policies and funding for biological research activities and shift towards value-based care are the major factors expected to drive the growth of the market for confocal microscope over the forecast period.
Furthermore, increasing number of research and development activities and technological advancement in microscopy are the other factors expected to spur the growth of the market for confocal microscope over the forecast period.
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Increasing spending on research & development and emergence of academia as the primary organization for carrying out basic research will further increase the adoption rate of confocal microscope. Likewise, use of confocal microscope for live cell imaging and confocal microscopy in ophthalmology is also expected to drive the growth of the market for confocal microscope.
However, high cost of technologically advanced microscopes and shortage of skilled professionals and expertise are expected to hamper the growth of the Confocal Microscope market.
Global Confocal Microscope Market: Forecast
The global confocal microscope market is segmented on the basis of product type, and end user. On the basis of product type, the global confocal microscope market is segmented into microscope system, accessories and software. Microscope system is sub segmented into laser scanning confocal microscope, spinning disk confocal microscope and re scan microscope.
The microscope systems is expected to be the leading segment in the global confocal microscope market over the forecast period. The microscope systems accounts a total value share of 92.0 % of the global confocal microscope market in 2017. The laser scanning confocal microscope segment is estimated to have incremental opportunity of US$ 200.1 Mn between 2016 and 2028.
Among end user, academic & research institute segment is expected to hold high share in the global confocal microscope market owing to increasing number of research in life science applications and rising adoption of confocal microscope in academic research.
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Geographically, the global confocal microscope market has been segmented into North America, Latin America, Europe, Asia Pacific, Japan and Middle East & Africa. This report assesses the trends driving the growth of each segment and offers analysis and insights into the potential of the confocal microscope market in specific regions.
North America accounted a large share in the global market in 2017, and is expected to be the dominant regional market for confocal microscope over the forecast period, owing to increasing spending in research and development.
Besides, presence of several key players with a robust distribution network for microscope and collaboration for the development of new techniques are some of the other key factors expected to drive the growth of the confocal microscope market in North America. Asia Pacific is expected to witness rapid growth over the forecast period.
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#Confocal Microscope Market Analysis#Confocal Microscope Market Demand#Confocal Microscope Market Development#Confocal Microscope Market Forecast#Confocal Microscope Market Growth#Confocal Microscope Market Revenue Share
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Medical Fiber Optics Market To Register Unwavering Growth By 2027
The global Medical Fiber Optics market was valued at US$ xx million in the year 2019. The market is estimated to be valued at US$ xx million in the year 2020, and is expected to reach US$ xx million by the year 2027, with an estimated CAGR of xx% during the forecast period (2021-2027). The research study also includes exhaustive information about market dynamics such as drivers, restraints, opportunities, technological advancements, future trends, supply chain analysis, patent landscape, pricing analysis, regulatory and reimbursement framework for precise market estimations and forecasts.
Additionally, the business intelligence study encompasses the COVID-19 scenario as follows:
· Long-Term, Mid-Term, and Short-Term Impact of COVID-19
· Pre- and Post-COVID-19 Scenario
· Disruptions in the Supply Chain
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Competitive Insights
Leading and emerging companies of the global Medical Fiber Optics market were identified based on their current offerings. Further, the Medical Fiber Optics industry is one of the most competitive industries, with the leading players actively competing against each other to gain a greater share in the industry. Some of the major companies in the Medical Fiber Optics market are: Leoni AG, Gulf Fiberoptics, Inc., Coherent, Inc., Timbercon, Inc., Fiberoptics Technology, Inc., American Medical System LLC (AMS), CardioGenesis Corporation, ROFIN-SINAR Technologies Inc., Schott AG, Newport Corporation, Molex Incorporated, Integra LifeSciences Holdings Corporation, SCHOTT Ag, IPG Photonics, and Sunoptic Technologies LLC, among others.
The competitive landscape of the Medical Fiber Optics industry exhibits an inclination towards emerging strategies including product launches, partnerships, collaborations and contracts, acquisitions, funding, and other developments to achieve the objectives faster.
Our reports fill up the gaps and provide you with all the detailed analysis of competitive companies involving:
· Analyzing competitive strategies and techniques
· Competitive positioning of key players
· PORTER’s and SWOT analysis for competitive risk analysis
· Competitive Share Analysis
· Financial analysis of players to determine their withstand capacity
· Analyzing their sales path and product study
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Key Segments Covered in the global Medical Fiber Optics market report are:
· By Fibre Type: (Pure Silica Fiber, UV-Silica, Near Infrared (NIR) Silica, Metal- Coated Silica, Plastic Clad Silica, Polycrystalline Fiber, and Polymer Optical)
· By Application: (Image Transmission, Illumination, Laser Signal Delivery, Fiber Optic Confocal Scanning, and Laser soldering)
· By End User: (Hospitals, Specialty Clinics, Ambulatory Surgical Centers, Diagnostic Laboratories, and Contract Research Organization)
Regional Coverage:
The global Medical Fiber Optics market segregates into five regions including North America, Europe, Asia-Pacific, Latin America, and Middle East and Africa. North America followed by Europe held the major share of the global market (in terms of value) in 2020. However, Asia-Pacific region exhibit highest CAGR (%) during the forecast period (2021-2027). Our research study further sub-divides regions into countries as follows:
· North America - the U.S. and Canada
· Europe - Germany, the U.K., France, Spain, Italy, Russia, and Rest-of-Europe
· Asia-Pacific - China, India, Japan, South Korea, Australia, ASEAN, and Rest-of-Asia-Pacific
· Latin America - Mexico, Brazil, and Rest-of-Latin America
· Middle East and Africa - Gulf Cooperation Council (GCC) Countries, South Africa, Israel, and Rest-of-Middle East and Africa
Market Dynamics:
The global medical fiber optics market is expected to grow at a significant growth over the forecast period, attributed to the continuous miniaturization of medical devices, increasing demand for advanced diagnostic technologies, and rising demand for minimally invasive surgeries. In August 2015, National Center for Biotechnology Information (NCBI) stated that there is tremendous patient demand for minimally invasive surgeries over the past 2 decades; as a result, surgeons rapidly embraced this technique, which has a direct impact on the increased use of medical fiber optics.
Technological advancement in the field of medical fiber optics is another key driving factor of this market. For example, high-temperature resistant glass optics are used for medical fluorescence imaging applications, which include toxic materials screening, analyte detection, and gene sequencing. Smaller disposable sensing catheters required in minimally invasive surgery is also anticipated to provide the growth of the medical fiber optics market globally.
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Cell Cycle Analysis Market Insights, Segmentation and Investment Till 2023
According to latest Cell Cycle Analysis Market Analysis 2019 to 2023 report, the Cell Cycle Analysis Market is expected to grow at healthy CAGR by 2023. Report include insightful analysis done Cell Cycle Analysis Industry expertise which comprises valuable historical and forecast information on Cell Cycle Analysis Market Segments by Product (Consumables, Instruments, & Others), Application (Cell Identification and Others), End-User (Academics & Research Institutions, Hospitals & Diagnostic Laboratories, & Others) – Global Forecast Till 2023
Market Research Future (MRFR) examines the global cell cycle analysis market in its latest research report. Comprehensive coverage on the cell cycle analysis market is provided in the MRFR report, including a detailed review of the market’s historical movement patterns, major drivers, and likely movement in the coming years. Major players in the global cell cycle analysis market are also studied in the report in order to provide readers with a complete overview of the competitive landscape of the cell cycle analysis market. Key strategies used by leading players to acquire a larger share in the global cell cycle analysis market are also examined in the report to provide a clear picture of what works in the market and what doesn’t.
Cell cycle analysis has become a key part of the life sciences sector in recent years due to the growing interest in cellular research. Cellular research has become important due to its vital contributions in the field of disease diagnosis and etymology research. Cellular research can reveal more detailed information about how cells replicate themselves and how they are affected by various substances and pathogens. This information is vital in studying how diseases form and how they can be prevented. Cell response to specific pathogens or toxins can be studied in detail in cell cycle analysis processes, allowing for a more detailed understanding of the development of the respective disease and, further, the development of targeted remedies on the cellular scale.
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The growing demand for personalized medicine and targeted medicine is likely to be a major driver for the cell cycle analysis market over the forecast period. Personalized medication requires a detailed understanding of how an individual’s cells will react to certain medicines and drugs. This is supplied with cell cycle analysis. The increasing prevalence of neurodegenerative and lifestyle diseases is also likely to be a major driver for the cell cycle analysis market, as these diseases are linked with the health of individual cellular systems within the body. The natural development of internal organs and cell structures over time can be studied in great detail with cell cycle analysis, leading to a growing demand for cell cycle analysis from the healthcare sector.
Competitive Analysis:
Leading players in the global cell cycle analysis market include Nexcelom Bioscience LLC, Miltenyi Biotech, Bio-Rad Laboratories Inc., Promega Corporation, PerkinElmer Inc., Olympus Corporation, Agilent Technologies Inc., GE Healthcare, Danaher Corporation, Thermo Fisher Scientific Inc., Merck & Co. Inc., and Becton Dickinson and Company.
In March 2018, Agilent Technologies completed the acquisition of Advanced Analytical Technologies Inc. for USD 250 million. Inorganic growth through acquisitions and mergers is likely to remain a promising strategy for larger players in the cell cycle analysis market over the forecast period, as smaller players may have interesting innovations that may help the larger company expand its product portfolio.
Segmentation:
The cell cycle analysis market has been segmented on the basis of product, application, end user, and region.
On the basis of product, the cell cycle analysis market has been classified as consumables and instruments. The consumables segment has been further divided into reagents, assay kits, microplates, and other consumables. The assay kits segment has been further divided into immunoassay and cell-based assay. The instruments segment has been classified into microscopes, flow cytometry, spectrophotometer, qPCR, cell counter, high content screening systems, and cell microarrays. The microscopes segment has been divided into electron microscopes, inverted microscopes, stereomicroscopes, fluorescence and confocal microscopes, phase contrast microscopes, near-field scanning optical microscopes (NSOM), and other microscopes. The flow cytometers sub-segment has been segmented into flow cytometry instruments and flow cytometry software. The spectrophotometers segment has been divided into fluorescence microplate readers, microplate spectrophotometers, and colorimeters. Furthermore, cell counters have been sub-segmented into automated cell counters and hemocytometers and manual cell counters. The synthetic high-content screening (HCS) systems segment includes cell imaging and analysis HCS systems and HCS software.
By application, the global cell cycle analysis market is segmented into cell identification, cell viability, cell signaling pathway/signal transduction, cell proliferation, cell counting and quality control, cell interaction, cell structure study, target identification, and validation and single-cell analysis.
By end use, the cell cycle analysis market is segmented into academics and research institutions, hospitals and diagnostic laboratories, the pharmaceuticals industry, and others.
Regional Analysis:
The Americas is likely to dominate the global cell cycle analysis market over the forecast period, followed by Europe. On the other hand, Asia Pacific is expected to be the fastest growing market over the forecast period.
Table Of Contents
Chapter 1. Report Prologue
Chapter 2. Market Introduction
2.1 Definition
2.2 Scope Of The Study
2.2.1 Research Objective
2.2.2 Assumptions
2.2.3 Limitations
Chapter 3. Research Methodology
3.1 Introduction
3.2 Primary Research
3.3 Secondary Research
3.4 Market Size Estimation
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Chapter 4. Market Dynamics
4.1 Drivers
4.2 Restraints
4.3 Opportunities
4.4 Challenges
4.5 Macroeconomic Indicators
4.6 Technology Trends & Assessment
Chapter 5. Market Factor Analysis
…Continued
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Cell Cycle Analysis Market Analysis, Size, Growth, Trends And Forecast To 2023
Cell Cycle Analysis Market Research Report - Global Forecast till 2023, Published by Market Research Future. MRFR Provides Blood Testing Industry Updates, Size, Share, Growth, Competitive Landscape, Regional Outlook
Cell Cycle Analysis Market Analysis
Market Research Future (MRFR) examines the global cell cycle analysis market in its latest research report. Comprehensive coverage on the cell cycle analysis market is provided in the MRFR report, including a detailed review of the market’s historical movement patterns, major drivers, and likely movement in the coming years. Major players in the global cell cycle analysis market are also studied in the report in order to provide readers with a complete overview of the competitive landscape of the cell cycle analysis market. Key strategies used by leading players to acquire a larger share in the global cell cycle analysis market are also examined in the report to provide a clear picture of what works in the market and what doesn’t.
Read more news on: https://www.medgadget.com/2019/09/cell-cycle-analysis-market-driven-by-growing-demand-for-cellular-research-global-industry-overview-2019-size-growth-share-analysis-top-key-players-regional-forecast-to-2023.html
Cell cycle analysis has become a key part of the life sciences sector in recent years due to the growing interest in cellular research. Cellular research has become important due to its vital contributions in the field of disease diagnosis and etymology research. Cellular research can reveal more detailed information about how cells replicate themselves and how they are affected by various substances and pathogens. This information is vital in studying how diseases form and how they can be prevented. Cell response to specific pathogens or toxins can be studied in detail in cell cycle analysis processes, allowing for a more detailed understanding of the development of the respective disease and, further, the development of targeted remedies on the cellular scale.
The growing demand for personalized medicine and targeted medicine is likely to be a major driver for the cell cycle analysis market over the forecast period. Personalized medication requires a detailed understanding of how an individual’s cells will react to certain medicines and drugs. This is supplied with cell cycle analysis. The increasing prevalence of neurodegenerative and lifestyle diseases is also likely to be a major driver for the cell cycle analysis market, as these diseases are linked with the health of individual cellular systems within the body. The natural development of internal organs and cell structures over time can be studied in great detail with cell cycle analysis, leading to a growing demand for cell cycle analysis from the healthcare sector.
Cell Cycle Analysis Market Competitive Analysis:
Leading players in the global cell cycle analysis market include Nexcelom Bioscience LLC, Miltenyi Biotech, Bio-Rad Laboratories Inc., Promega Corporation, PerkinElmer Inc., Olympus Corporation, Agilent Technologies Inc., GE Healthcare, Danaher Corporation, Thermo Fisher Scientific Inc., Merck & Co. Inc., and Becton Dickinson and Company.
In March 2018, Agilent Technologies completed the acquisition of Advanced Analytical Technologies Inc. for USD 250 million. Inorganic growth through acquisitions and mergers is likely to remain a promising strategy for larger players in the cell cycle analysis market over the forecast period, as smaller players may have interesting innovations that may help the larger company expand its product portfolio.
Cell Cycle Analysis Market Segmentation:
The cell cycle analysis market has been segmented on the basis of product, application, end user, and region.
On the basis of product, the cell cycle analysis market has been classified as consumables and instruments. The consumables segment has been further divided into reagents, assay kits, microplates, and other consumables. The assay kits segment has been further divided into immunoassay and cell-based assay. The instruments segment has been classified into microscopes, flow cytometry, spectrophotometer, qPCR, cell counter, high content screening systems, and cell microarrays. The microscopes segment has been divided into electron microscopes, inverted microscopes, stereomicroscopes, fluorescence and confocal microscopes, phase contrast microscopes, near-field scanning optical microscopes (NSOM), and other microscopes. The flow cytometers sub-segment has been segmented into flow cytometry instruments and flow cytometry software. The spectrophotometers segment has been divided into fluorescence microplate readers, microplate spectrophotometers, and colorimeters. Furthermore, cell counters have been sub-segmented into automated cell counters and hemocytometers and manual cell counters. The synthetic high-content screening (HCS) systems segment includes cell imaging and analysis HCS systems and HCS software.
By application, the global cell cycle analysis market is segmented into cell identification, cell viability, cell signaling pathway/signal transduction, cell proliferation, cell counting and quality control, cell interaction, cell structure study, target identification, and validation and single-cell analysis.
By end use, the cell cycle analysis market is segmented into academics and research institutions, hospitals and diagnostic laboratories, the pharmaceuticals industry, and others.
Browse Full Report with TOC at: https://www.marketresearchfuture.com/reports/cell-cycle-analysis-market-673
Cell Cycle Analysis Market Regional Analysis:
The Americas is likely to dominate the global cell cycle analysis market over the forecast period, followed by Europe. On the other hand, Asia Pacific is expected to be the fastest growing market over the forecast period.
#Cell Cycle Analysis Market#Cell Cycle Analysis Market Size#Cell Cycle Analysis Market Analysis#Cell Cycle Analysis Market Share#Cell Cycle Analysis Market Growth
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Live Cell Imaging Market worth USD 2.9 billion by 2023, at a CAGR of 8.9%
The global live cell imaging market is expected to reach USD 2.9 billion by 2023 from an estimated USD 1.9 billion in 2018, at a CAGR of 8.9%.
Growth in the live cell imaging market can primarily be attributed to various factors such as the growing adoption of high-content screening techniques in drug discovery, rising incidence of cancer, and the growth in funding for research.
By type, the reagents segment is estimated to hold the largest share of the live cell imaging consumables market
On the basis of type, the global live cell imaging consumables market is segmented into reagents, media, assay kits, and other consumables (microplates, slides, petri dishes, cover slips, and culture chambers). In 2018, the reagents segment accounted for the largest share of the consumables market. The large share of this segment can be attributed to the growing applications of biosciences and biotechnology within the pharmaceutical and healthcare fields.
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The stem cells segment is expected to grow at the fastest rate during the forecast period
On the basis of application, the live cell imaging market is segmented into cell biology, stem cells, developmental biology, and drug discovery. The stem cells segment is expected to grow at the highest CAGR during the forecast owing to the increasing stem cell research activity and investments.
North America is expected to hold the largest market share during the forecast period
North America is the major revenue generating region in the live cell imaging market. The live cell imaging market in the region is driven by the availability of government funding for life science research, drug development regulations, advances in live cell imaging techniques, growth in the biotechnology and pharmaceutical industries, and the rising incidence of cancer.
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Key Market Players
The key players in the live cell imaging market are Danaher Corporation (US), Carl Zeiss AG (Germany), Nikon Corporation (Japan), Olympus Corporation (Japan), PerkinElmer, Inc. (US), GE Healthcare (US), Bruker Corporation (US), Thermo Fisher Scientific Inc. (US), Sartorius AG (Germany), BioTek Instruments (US), Etaluma, Inc. (US), CytoSMART Technologies (Netherlands), and NanoEnTek Inc. (Korea).
Recent Developments
· Leica Microsystems (a subsidiary of Danaher Corporation) entered into an agreement with Triolab AS, a leading distributor of diagnostics and life science products.
· In September 2018, Leica signed an agreement with Triolab to enable the latter supply and support Leica Microsystems’ confocal, and stereo microscope systems for the life science industry and sample preparation products for electron microscopy.
· Carl Zeiss AG entered into a partnership with the Carl R. Woese Institute for Genomic Biology (IGB) (US).
· In March 2017, Carl entered into a partnership with the Carl R. Woese Institute for Genomic Biology (IGB) to provide researchers around the US with access to the advanced technologies offered by Zeiss including the ZEISS Celldiscoverer 7, at IGB’s Core Facilities.
· Bruker acquired Luxendo, a privately held spin-off of the European Molecular Biology Laboratory (EMBL) (Germany), a company that develops and manufactures light-sheet fluorescence microscopy instruments. In May 2017, Bruker acquired Luxendo to enable new research advances in live-cell imaging.
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Life Cell Imaging Market, by Product Type, Modality, End-use Industry, and Region - Trends, and Forecast till 2026
Life Cell Imaging MarketLife Cell Imaging Market – A step towards improvement in drug discovery
Cellular imaging refers to the techniques that allows the detection and analysis of various cellular organelles and macromolecules using a light-based or electron based microscopes. These are then mainly analyzed through computer based programs. Apart from the structural organization and orientation of organs and cells in organisms, dynamic processes contributes a major part in understanding the function and mechanism of a biological entity.
Live life cell imaging refers to the non-invasive techniques such as optical methods that help visualize functional behavior of the cells with the help of high-end imaging instruments such as stereo microscopes. The high-content screening systems have become a popular analytical tool for elucidation of biological mechanisms as well as for the study of dynamic functions of the cells. The life cell imaging systems are used in order to study the living cells through the images obtained from life cell imaging instruments.
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Rise in development of cancer drugs is a crucial factor to propel the market growth
Accelerating drug development has become a crucial factor so as to come up with new and advanced drugs that has potential to treat cancer. Understanding the cellular functionality of these oncogenic substances and tumor cells is thus a very important step in the drug development and requires high-powered microscopes to understand the dynamic structures so as to develop a drug against the cancer causing agents.
The government as well as various federal agencies play important roles funding imaging systems to support and clinical care and research. For instance, the National Science and Technology Council, which is an Interagency Working Group on Medical Imaging (IWGMI) established in 2015 develops a roadmap for medical-imaging research and development in the U.S. that helps in generating better outcome of healthcare and optimize the costs.
The global life cell imaging market was valued at US$ 4.4 billion in 2016 and is expected to witness a robust CAGR of 8.60% over the forecast period (2017 - 2025).
Advancements in live life cell imaging microscopes to create a highly competitive scenario among market players
The use of quantum dots that are nanoparticles with fluorescent properties offering advantages over organic fluorophores is emerging as a potential technique that is incorporated recently in the biological imaging microscopes.
Moreover, scientists in the University of Rochester in 2017 demonstrated for the use of quantum dots as photoredox catalysts for the generation of carbon-carbon bonds through light emission and the technique is suggested to be helpful in simplifying the synthesis of novel compounds in the future. North America is expected to be the regional dominator throughout the forecast period, followed by Europe owing to high capitalization in imaging systems as well as intensive research and development to improve the imaging quality and data functionality.
For instance, Luxendo- a spinoff of European Molecular Biology Laboratory raised US$ 9.4 Mn in January 2017 to commence international sales of its unique single plane illumination microscopy technology in order to take over confocal microscopes in biology research. The major players operating global life cell imaging market includes Leica Microsystems, Carl Zeiss Meditec AG, Nikon Instruments, Inc., Thermofisher Scientific, Inc., Olympus Corporation, GE Healthcare, Sigma-Aldrich Corporation, Molecular Devices LLC, PerkinElmer, Inc. and Becton-Dickinson and Company.
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Cell Counting Devices Market Size, Share, Outlook, and Analysis, 2018-2026
Cell counting is a technique used for determining physical properties of cells such as concentration, density, and viability. Cell counting method is adopted by doctors also, so as to know the condition of the patient. They use this method for estimating the concentration of white blood cells, red blood cells, platelets, etc. and the amount of it tells the health status of patients. Cells counting can be done either manually through hemocytometer where in the volumetric grid of it is used for estimating the concentration of cells, or by plating the microbes into petri dish containing growth medium.
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Key players are focused on developing new products for cell counting, which is expected to propel the global cell counting devices market growth. For instance, in January 2019, DeNovix Inc. launched a product, Cell Drop Automated Cell Counter for analysis of cell culture. It has dual fluorescence and bright-field optics, and also, easy to use analyzer. It includes direct pipette technology, which ensures precise and accurate cell suspension. It does not require any calibration. It is designed with the aim to eliminate the slides and the complex method of hemocytometer.
Moreover, key players also actively involved in participating in conferences and events related to cell counting device. For instance, in February 2019, BioRad Laboratories Inc. participated in Society for Laboratory Automation and Screening 2019 (SLAS), held in Washington D.C., wherein it showcased its product, ZE5 cell analyzer. It consists a robotic arm, which ensures precise and accurate measurements of additions of reagents and also enables easy integration of fluids. It is capable of processing 96 or 384 plates under 60 minutes.
In 2017, GE Healthcare, a company that designs imaging and monitoring systems entered into a partnership with Guangzhou RiboBio Co., Ltd., a biotechnology company to establish oligonucleotide drug development and manufacturing facility in China. GE healthcare provided all the advanced instruments, which also includes IN Cell Analyzer 6500H, while Guangzhou RiboBio supported the infrastructure and provided with the staff. IN Cell Analyzer 6500H is an imaging system based on IRIS confocal technology. Its features live cell imaging, three dimensional imaging, and higher throughput.
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Moreover, in April 2019, Nexcelom Bioscience, a manufacturer of cell counting and characterization products released Cellaca MX. It is an automated cell counter consisting of bright field and fluorescence imaging cytometry. Around 24 samples can be processed in 48 seconds allowing high throughput and high speed. Hence, these factors are expected to drive the global cell counting devices market growth.
Major players operating in the global cell counting devices market include Paul Marienfeld GmbH & Co. KG, ChemoMetec A/S, BioTek Instruments, Inc., Becton, Dickinson and Company, Tip Biosystems, Corning Inc., Bio-Rad Laboratories, Inc., Agilent Technologies, Inc., GE Healthcare, and Thermo Fisher Scientific
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Global Life Cell Imaging Market Size Share Forecast 2026
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Cellular imaging refers to the techniques that allows the detection and analysis of various cellular organelles and macromolecules using a light-based or electron based microscopes. These are then mainly analyzed through computer based programs. Apart from the structural organization and orientation of organs and cells in organisms, dynamic processes contributes a major part in understanding the function and mechanism of a biological entity. Live life cell imaging refers to the non-invasive techniques such as optical methods that help visualize functional behavior of the cells with the help of high-end imaging instruments such as stereo microscopes. The high-content screening systems have become a popular analytical tool for elucidation of biological mechanisms as well as for the study of dynamic functions of the cells. The life cell imaging systems are used in order to study the living cells through the images obtained from life cell imaging instruments.
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The global life cell imaging industry has observed a notable growth over the last few decades due to significant increase in the demand for life cell imaging techniques for the study of cancer, neuroscience and drug discovery. Cellular imaging involves use of techniques that enable the detection and analysis of cellular organelles and macromolecules through light- or electron-based microscopes. Cell imaging is rapidly evolving as new technologies are being introduced such as light sheet microscopy, intra-vital microscopy, environmental scanning electron microscopy and high throughput microscopy. Furthermore, life cell imaging use fluorophore labeled molecules, fluorescent dyes and recombinant plasmid systems for imaging expression, transport, co-localization and degradation in either living or fixed cells. In addition, cellular structures and functions can be visually detected using methods such as wide field fluorescence and fluorescence resonance energy transfer (FRET) microscopy.
The life cell imaging market is gaining significant traction due to rising adoption of techniques in various fields such as stem cell biology, neurobiology, developmental biology, cell biology, and oncology, drug discovery, and electro physiology.
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Furthermore, life cell imaging has emerged as a potential tool that helps provide insights into dynamic processes in living cells and cell function with the help of agents such as green fluorescent protein (GFP) and multicolored probes that precisely label molecules and directly probe its function in live cells by light microscopy. Due to the visualization ability of the imaging tools, the dynamics of protein vesicles, organelles, cells and tissue has provided new insights into how cells function. However, the factors such as shortage of skilled professionals and high cost of the advanced microscopes hinder market growth to a certain extent.
Table of Contents
Research Objectives and Assumptions
Research Objectives
Assumptions
Abbreviations
Market Purview
Report Description
Market Definition and Scope
Executive Summary
Market Snippet, By Drug Type
Market Snippet, By Distribution Channel
Market Snippet, By Region
Coherent Opportunity Map (COM)
Market Dynamics, Regulations, and Trends Analysis
Market Dynamics
Drivers
Restraints
Market Opportunities
Impact Analysis
Market Trends
Regulatory Scenario
Reimbursement Scenario
Epidemiology
PEST Analysis
Recent Product Launch
Merger and Acquisition Scenario
Top players in the market
North America is expected to be the regional dominator throughout the forecast period, followed by Europe owing to high capitalization in imaging systems as well as intensive research and development to improve the imaging quality and data functionality. For instance, Luxendo- a spinoff of European Molecular Biology Laboratory raised US$ 9.4 Mn in January 2017 to commence international sales of its unique single plane illumination microscopy technology in order to take over confocal microscopes in biology research.
The major players operating global life cell imaging market includes Leica Microsystems, Carl Zeiss Meditec AG, Nikon Instruments, Inc., Thermofisher Scientific, Inc., Olympus Corporation, GE Healthcare, Sigma-Aldrich Corporation, Molecular Devices LLC, PerkinElmer, Inc. and Becton-Dickinson and Company.
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What Could be Confocal Microscopes Market Biggest Opportunity and Challenges Post 2020 Crisis?
Latest market study on “Global Confocal Microscopes Market to 2027 - Global Analysis and Forecasts by Type (Multi-Photon Microscopy and Confocal Disk Spinning Microscopy), End User (Hospitals, Diagnostic Laboratories and Academics & Research Institute)”.The research report provides deep insights into the global market revenue, parent market trends, macro-economic indicators, and governing factors, along with market attractiveness per market segment. The report provides an overview of the growth rate of the Confocal Microscopes market during the forecast period, i.e., 2020–2027. Most importantly, the report further identifies the qualitative impact of various market factors on market segments and geographies. The research segments the market on the basis of product type, application, technology, and region. To offer more clarity regarding the industry, the report takes a closer look at the current status of various factors including but not limited to supply chain management, niche markets, distribution channel, trade, supply, and demand and production capability across different countries.
The global confocal microscopes market expected to be US$ 929.03 Mn in 2018 and is predicted to grow at a CAGR of 3.5% during the forecast period 2019 - 2027, to reach US$ 1,248.86 Mn by 2027.
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Some of the key players profiled in the study are Carl Zeiss AG, Nikon Corporation, Bruker , Olympus Corporation, Leica Microsystems, KEYENCE CORPORATION., Yokogawa Electric Corporation, Confocal.nl, Oxford Instruments, Thorlabs, Inc., etc.
Market Insights
Application Of Confocal Microscopy In Bioimaging
Confocal microscopy is having huge application in the field of biology research like live cell imaging, neuroscience studies and others. Confocal microscopy allows the analysis of fluorescent labelled thick specimens without physical sectioning, more color differentiation possible as images are viewed on the system rather than by eye, three dimensional reconstruction of the specimen is possible also improved resolution. For instance, in 2017, researchers of the State University of New York Downstate Medical Center (Brooklyn, NY) have found that hypoxia (lack of oxygen) because of abnormal blood flow is responsible for as much as half of seizure-related neuronal degeneration cases in epilepsy. A confocal microscopy technique enabled the research team to detect a cascade of abnormal capillary vasodynamics in the brain.
Considering the huge application of confocal microscopy in the field of bioimaging the player such as Leica Microsystem launched the first imaging center San Francisco US in 2018. The aim of opening this imaging center was to boost academic research for life science. In this scientist from life science were given access to state-of-the-art microscopy systems for research purpose.
The Covid-19 (coronavirus) pandemic is impacting society and the overall economy across the world. The impact of this pandemic is growing day by day as well as affecting the supply chain. The COVID-19 crisis is creating uncertainty in the stock market, massive slowing of supply chain, falling business confidence, and increasing panic among the customer segments. The overall effect of the pandemic is impacting the production process of several industries including Medical Device, Pharmaceutical, Healthcare and many more. Trade barriers are further restraining the demand- supply outlook. As government of different regions have already announced total lockdown and temporarily shutdown of industries, the overall production process being adversely affected; thus, hinder the overall Confocal Microscopes Market globally. This report on ‘Confocal Microscopes Market’ provides the analysis on impact on Covid-19 on various business segments and country markets. The report also showcase market trends and forecast to 2027, factoring the impact of Covid -19 Situation.
The report profiles the key players in the industry, along with a detailed analysis of their individual positions against the global landscape. The study conducts SWOT analysis to evaluate strengths and weaknesses of the key players in the Confocal Microscopes market. The researcher provides an extensive analysis of the Confocal Microscopes market size, share, trends, overall earnings, gross revenue, and profit margin to accurately draw a forecast and provide expert insights to investors to keep them updated with the trends in the market.
CONFOCAL MICROSCOPES – MARKET SEGMENTATION
By Type
Multi-Photon Microscopy
Confocal Disk Spinning Microscopy
By End User
Hospitals
Diagnostic Laboratories
Academics & Research Institute
By Geography
U.S.
Canada
Mexico
France
Germany
UK
Spain
Italy
China
India
Japan
Australia
South Korea
Saudi Arabia
South Africa
UAE
Brazil
Argentina
Competitive scenario:
The study assesses factors such as segmentation, description, and applications of Confocal Microscopes industries. It derives accurate insights to give a holistic view of the dynamic features of the business, including shares, profit generation, thereby directing focus on the critical aspects of the business.
Scope of the Report
The research on the Confocal Microscopes market focuses on mining out valuable data on investment pockets, growth opportunities, and major market vendors to help clients understand their competitor’s methodologies. The research also segments the Confocal Microscopes market on the basis of end user, product type, application, and demography for the forecast period 2021–2027. Comprehensive analysis of critical aspects such as impacting factors and competitive landscape are showcased with the help of vital resources, such as charts, tables, and infographics.
Confocal Microscopes Market Segmented by Region/Country: North America, Europe, Asia Pacific, Middle East & Africa, and Central & South America
Major highlights of the report:
· All-inclusive evaluation of the parent market
· Evolution of significant market aspects
· Industry-wide investigation of market segments
· Assessment of market value and volume in past, present, and forecast years
· Evaluation of market share
· Study of niche industrial sectors
· Tactical approaches of market leaders
· Lucrative strategies to help companies strengthen their position in the market
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Confocal Laser Scanning Microscope Market Growth Prospects, Demand And Forecast 2017-2025
Confocal laser scanning microscopy is a method for obtaining high-resolution optical images with depth selectivity. It is basically an optical imaging method used to increase optical resolution and contrast of a micrograph by means of adding a spatial pinhole placed at the confocal plane of the lens to eliminate out-of-focus light. Confocal laser scanning microscope has the capability to acquire in-focus images from selected depths. It enables the reconstruction of three-dimensional structures from the obtained images by collecting sets of images at different depths (a process known as optical sectioning) within a thick object.
Confocal laser scanning microscopes require very good optics, one or more lasers, an integrated beam scanning - image acquisition and image processing system. Confocal microscopy allows accurate and non-destructive optical sectioning in a plane perpendicular or parallel to the optical axis of the microscope. This method has a lot of demand in the scientific and industrial communities and common applications includes life sciences, semiconductor inspection and materials science. These microscopes provide better resolution on both the vertical and horizontal planes. Confocal laser scanning microscopes offer advantages, especially in imaging thick cells with a high density of intracellular components.
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It provides blur-free images of thick specimens at various depths. Images covering every detail of the specimen is taken and projected with the help of a computer. There are many other benefits as well of using this type of microscope which includes the detailed study of minute objects within a sample and the ability to filter fluorescence colors providing views of a sample not visible using white light. Such microscope offers an easily upgraded confocal viewing system that provides accurate resolutions. Such microscope also improves the signal-to-noise ratio.
Increasing demand of efficient tools for early diagnosis of chronic and life threatening disorders, support from the government in order to improve the overall healthcare services, expanding research and development in various technical fields as well as the need for high-speed imaging abilities are some of the primary factors driving the growth of global confocal laser scanning microscope market. However, the higher price of progressive microscopes and custom duty on healing instruments are some of the factors hindering the market growth. Confocal laser scanning microscope has considerable advantage over a conventional microscope as it rejects the light that does not come from the focal plane, allowing one to perform optical slicing and construction of three-dimensional images.
The global confocal laser scanning microscope market is segmented on the basis of application, type and region. On the basis of application the confocal laser scanning microscope market is segmented into hospitals, ambulatory surgical centers, clinics, diagnostic centers, medical science, electronics, research institutes, optics, crystallography, life science imaging systems, industrial testing instruments and others. The confocal laser scanning microscope is a fundamental tool for many biomedical imaging applications at the level of the light microscope. Based on the type, the global confocal laser scanning microscope market is segmented into confocal microscopes, ophthalmic microscopes, electron microscopes, and skimming investigation microscopes. The confocal laser scanning microscope is a tool for the investigation of skin drug delivery systems and diagnosis. Geographically, the confocal laser scanning microscope market is segmented into U.S., Japan, China, Europe and Taiwan.
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Some of the key players operating in the global confocal laser scanning microscope market with most significant development are Motic Instruments Inc., Advanced Microscopy Group, Thomas Scientific, Molecular Probes, MAVIG, Olympus Corporation, Nikon Corporation, Asylum, Leica Microsystems, Carl Zeiss AG, Japanese Electronics Co., Ltd., Hitachi High-Technologies Corporation, Thorlabs and Bruker among others.
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Confocal Laser Scanning Microscope Market: Worldwide Industry Analysis and New Market Opportunities Explored
Confocal laser scanning microscopy is a method for obtaining high-resolution optical images with depth selectivity. It is basically an optical imaging method used to increase optical resolution and contrast of a micrograph by means of adding a spatial pinhole placed at the confocal plane of the lens to eliminate out-of-focus light. Confocal laser scanning microscope has the capability to acquire in-focus images from selected depths. It enables the reconstruction of three-dimensional structures from the obtained images by collecting sets of images at different depths (a process known as optical sectioning) within a thick object.
Confocal laser scanning microscopes require very good optics, one or more lasers, an integrated beam scanning – image acquisition and image processing system. Confocal microscopy allows accurate and non-destructive optical sectioning in a plane perpendicular or parallel to the optical axis of the microscope. This method has a lot of demand in the scientific and industrial communities and common applications includes life sciences, semiconductor inspection and materials science. These microscopes provide better resolution on both the vertical and horizontal planes. Confocal laser scanning microscopes offer advantages, especially in imaging thick cells with a high density of intracellular components.
It provides blur-free images of thick specimens at various depths. Images covering every detail of the specimen is taken and projected with the help of a computer. There are many other benefits as well of using this type of microscope which includes the detailed study of minute objects within a sample and the ability to filter fluorescence colors providing views of a sample not visible using white light. Such microscope offers an easily upgraded confocal viewing system that provides accurate resolutions. Such microscope also improves the signal-to-noise ratio.
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Increasing demand of efficient tools for early diagnosis of chronic and life threatening disorders, support from the government in order to improve the overall healthcare services, expanding research and development in various technical fields as well as the need for high-speed imaging abilities are some of the primary factors driving the growth of global confocal laser scanning microscope market. However, the higher price of progressive microscopes and custom duty on healing instruments are some of the factors hindering the market growth. Confocal laser scanning microscope has considerable advantage over a conventional microscope as it rejects the light that does not come from the focal plane, allowing one to perform optical slicing and construction of three-dimensional images.
The global confocal laser scanning microscope market is segmented on the basis of application, type and region. On the basis of application the confocal laser scanning microscope market is segmented into hospitals, ambulatory surgical centers, clinics, diagnostic centers, medical science, electronics, research institutes, optics, crystallography, life science imaging systems, industrial testing instruments and others. The confocal laser scanning microscope is a fundamental tool for many biomedical imaging applications at the level of the light microscope.
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Based on the type, the global confocal laser scanning microscope market is segmented into confocal microscopes, ophthalmic microscopes, electron microscopes, and skimming investigation microscopes. The confocal laser scanning microscope is a tool for the investigation of skin drug delivery systems and diagnosis. Geographically, the confocal laser scanning microscope market is segmented into U.S., Japan, China, Europe and Taiwan.
Some of the key players operating in the global confocal laser scanning microscope market with most significant development are Motic Instruments Inc., Advanced Microscopy Group, Thomas Scientific, Molecular Probes, MAVIG, Olympus Corporation, Nikon Corporation, Asylum, Leica Microsystems, Carl Zeiss AG, Japanese Electronics Co., Ltd., Hitachi High-Technologies Corporation, Thorlabs and Bruker among others.
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Cell Cycle Analysis Market Sales, Cost and Profit By 2027
According to latest Cell Cycle Analysis Market Analysis 2019 to 2023 report, the Cell Cycle Analysis Market is expected to grow at healthy CAGR by 2023. Report include insightful analysis done Cell Cycle Analysis Industry expertise which comprises valuable historical and forecast information on Cell Cycle Analysis Market Segments by Product (Consumables, Instruments, & Others), Application (Cell Identification and Others), End-User (Academics & Research Institutions, Hospitals & Diagnostic Laboratories, & Others) – Global Forecast Till 2023
Market Research Future (MRFR) examines the global cell cycle analysis market in its latest research report. Comprehensive coverage on the cell cycle analysis market is provided in the MRFR report, including a detailed review of the market’s historical movement patterns, major drivers, and likely movement in the coming years. Major players in the global cell cycle analysis market are also studied in the report in order to provide readers with a complete overview of the competitive landscape of the cell cycle analysis market. Key strategies used by leading players to acquire a larger share in the global cell cycle analysis market are also examined in the report to provide a clear picture of what works in the market and what doesn’t.
Cell cycle analysis has become a key part of the life sciences sector in recent years due to the growing interest in cellular research. Cellular research has become important due to its vital contributions in the field of disease diagnosis and etymology research. Cellular research can reveal more detailed information about how cells replicate themselves and how they are affected by various substances and pathogens. This information is vital in studying how diseases form and how they can be prevented. Cell response to specific pathogens or toxins can be studied in detail in cell cycle analysis processes, allowing for a more detailed understanding of the development of the respective disease and, further, the development of targeted remedies on the cellular scale.
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The growing demand for personalized medicine and targeted medicine is likely to be a major driver for the cell cycle analysis market over the forecast period. Personalized medication requires a detailed understanding of how an individual’s cells will react to certain medicines and drugs. This is supplied with cell cycle analysis. The increasing prevalence of neurodegenerative and lifestyle diseases is also likely to be a major driver for the cell cycle analysis market, as these diseases are linked with the health of individual cellular systems within the body. The natural development of internal organs and cell structures over time can be studied in great detail with cell cycle analysis, leading to a growing demand for cell cycle analysis from the healthcare sector.
Competitive Analysis:
Leading players in the global cell cycle analysis market include Nexcelom Bioscience LLC, Miltenyi Biotech, Bio-Rad Laboratories Inc., Promega Corporation, PerkinElmer Inc., Olympus Corporation, Agilent Technologies Inc., GE Healthcare, Danaher Corporation, Thermo Fisher Scientific Inc., Merck & Co. Inc., and Becton Dickinson and Company.
In March 2018, Agilent Technologies completed the acquisition of Advanced Analytical Technologies Inc. for USD 250 million. Inorganic growth through acquisitions and mergers is likely to remain a promising strategy for larger players in the cell cycle analysis market over the forecast period, as smaller players may have interesting innovations that may help the larger company expand its product portfolio.
Segmentation:
The cell cycle analysis market has been segmented on the basis of product, application, end user, and region.
On the basis of product, the cell cycle analysis market has been classified as consumables and instruments. The consumables segment has been further divided into reagents, assay kits, microplates, and other consumables. The assay kits segment has been further divided into immunoassay and cell-based assay. The instruments segment has been classified into microscopes, flow cytometry, spectrophotometer, qPCR, cell counter, high content screening systems, and cell microarrays. The microscopes segment has been divided into electron microscopes, inverted microscopes, stereomicroscopes, fluorescence and confocal microscopes, phase contrast microscopes, near-field scanning optical microscopes (NSOM), and other microscopes. The flow cytometers sub-segment has been segmented into flow cytometry instruments and flow cytometry software. The spectrophotometers segment has been divided into fluorescence microplate readers, microplate spectrophotometers, and colorimeters. Furthermore, cell counters have been sub-segmented into automated cell counters and hemocytometers and manual cell counters. The synthetic high-content screening (HCS) systems segment includes cell imaging and analysis HCS systems and HCS software.
By application, the global cell cycle analysis market is segmented into cell identification, cell viability, cell signaling pathway/signal transduction, cell proliferation, cell counting and quality control, cell interaction, cell structure study, target identification, and validation and single-cell analysis.
By end use, the cell cycle analysis market is segmented into academics and research institutions, hospitals and diagnostic laboratories, the pharmaceuticals industry, and others.
Regional Analysis:
The Americas is likely to dominate the global cell cycle analysis market over the forecast period, followed by Europe. On the other hand, Asia Pacific is expected to be the fastest growing market over the forecast period.
Table Of Contents
Chapter 1. Report Prologue
Chapter 2. Market Introduction
2.1 Definition
2.2 Scope Of The Study
2.2.1 Research Objective
2.2.2 Assumptions
2.2.3 Limitations
Chapter 3. Research Methodology
3.1 Introduction
3.2 Primary Research
3.3 Secondary Research
3.4 Market Size Estimation
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Chapter 4. Market Dynamics
4.1 Drivers
4.2 Restraints
4.3 Opportunities
4.4 Challenges
4.5 Macroeconomic Indicators
4.6 Technology Trends & Assessment
Chapter 5. Market Factor Analysis
…Continued
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Super Resolution Microscopes Market Opportunities To Reach $5.6 Billion By 2026
San Francisco, 04 April 2019 – “Super-resolution Microscopes Market Analysis Report By Technology (STED, SIM, STORM), By Application (Nanotechnology, Life Science), By Region, And Segment Forecasts, [2019 – 2026]”
The global super-resolution microscopes market size is estimated to reach USD 5.6 billion by 2026 and is expected to register a CAGR of 11.7%, according to a new report by Grand View Research, Inc. Increasing application in cell biology and biomedical imaging and technological advancements are factors expected to drive the market over the forecast period.
The limitation of confocal as well as fluorescence microscopy is overcome by super-resolution microscopes as they provide increased X-Y resolution beyond the limit of 200 - 250 nm. With STED technology, intracellular structures can be observed in ten times greater detail compared to conventional fluorescence microscopy. In nanotechnology, the visualization of the interaction of nanomaterials with biological entities at high resolution in 3D is a powerful tool, which benefits the market expansion.
North America holds the largest share in the market owing to technological advancements and surging R&D expenditure. Additionally, rising incidence of cancer and neurological disorders on account of growing elderly population is driving demand for super-resolution microscopy. Europe is anticipated to hold a significant share in the coming years due to presence of a large number of high-end systems.
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Further key findings from the study suggest:
Super-resolution microscopes are used in place of electron microscopes as they allow researchers to image biological specimens more precisely. Rise in research activities in neurology and cell biology are expected to further fuel the growth of the life science application segment
In the nanotechnology application segment, techniques such as Stochastic Super-resolution Microscopy (SSRM) have proved to give better results for various catalysis processes, such as metal nanoparticle catalysis, and they promise to accelerate the development and discovery of new and better catalysts
STED technology held the largest market share in 2018 attributed to its ability to deliver diffraction-unlimited images with no need for further computational processing
The PALM and STORM technology segments accounted for a significant share in 2018. Live three-dimensional imaging with three to six color imaging patterns is expected to increase their usage rate in the coming years
North America held the largest market share in 2018. Increasing research activities in different segments of life science and nanotechnology, and initiatives taken by the government in past years, where research funding agencies encouraged researchers to adopt super-resolution microscopes, are expected to drive the market in the region
Asia Pacific is expected to expand at a high CAGR in the coming years. High product sales in countries like China and growing interest of photonics companies and venture capitalists in the field of electronics and life sciences are the factors driving the regional market
Major players include Carl Zeiss Meditec AG, Leica Microsystems (Danaher Corporation), Nikon Corporation, and Olympus Corporation.
View more reports of this category by Grand View Research at www.grandviewresearch.com/industry/medical-devices
Grand View Research has segmented the global super-resolution microscopes market on the basis of technology, application, and region:
Super-resolution Microscopes Technology Outlook (Revenue, USD Million, 2015 - 2026)
Stimulated Emission Depletion Microscopy (STED)
Structured-Illumination Microscopy (SIM)
Stochastic Optical Reconstruction Microscopy (STORM)
Photoactivated Localization Microscopy (PALM)
Fluorescence Photoactivation Localization Microscopy (FPALM)
Super-resolution Microscopes Application Outlook (Revenue, USD Million, 2015 - 2026)
Nanotechnology
Life Science
Material Science
Semi-conductor
Others
Super-resolution Microscopes Regional Outlook (Revenue, USD Million, 2015 - 2026)
North America
U.S.
Canada
Europe
U.K.
Germany
France
Italy
Spain
Asia Pacific
Japan
China
Latin America
Brazil
Mexico
Middle East and Africa
South Africa
Browse Press Release of this Report: www.grandviewresearch.com/press-release/super-resolution-microscopes-market
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