#Acoustic Neuroma Patient
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jcsmicasereports · 23 days ago
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An Incidental Diagnosis of Dextrocardia on Chest X-ray during routine Evaluation in Post-op Resection of Acoustic Neuroma Patient by Harsh Rajesh Nathani in Journal of Clinical Case Reports Medical Images and Health Sciences
Abstract
A 60-year-old male patient with a history of dizziness, frontal headache, and diabetic imbalances was admitted to the Neurology Outpatient Department. He had a history of bronchial asthma, kharra, tobacco chewing, and alcohol consumption. Due to his medical history, he experienced a convulsion, tongue injury, and a convulsion in the Neurosurgery ward. He was transferred to the NeuroICU and required intubation via tracheostomy. A physiotherapy regimen was initiated to address his condition and aid in his recovery. The patient presented with tachypnea and tachycardia, elevated respiratory and heart rate, and a Glasgow Coma Scale (GCS) of E3VTM4.
He had sluggish bilateral pupillary light reflex and a cough reflex. Cranial nerve assessments revealed impairments in cranial nerves 5, 6, 7, and 8, affecting mastication, lateral rectus movement, facial expressions, and auditory acuity. Corneal reflex was graded as diminished. Neurological examinations revealed reduced biceps and ankle jerk, absence of plantar response, and decreased muscle tone in the right upper limb. The patient was mechanically ventilated via tracheostomy in SIMV mode due to aspiration as a consequence of tongue injury. Arterial blood gas (ABG) analysis revealed the presence of uncompensated respiratory acidosis.
The audiogram exhibited moderately severe mixed hearing loss in the right ear and severe mixed hearing loss in the left ear. Postoperative head computed tomography (CT) demonstrated a calvarial defect on the left occipital bone, accompanied by an underlying mixed-density collection and multiple large air collections along the left cerebellopontine angle cistern. Additionally, the left tentorium exhibited overlying extracalvarial soft tissue swelling, consistent with postoperative changes. Several air foci were observed along the anterior falx and in the right temporal region. Routine investigation through chest X-ray, performed for the evaluation of lung fields due to the patient's tongue bite incident, revealed the presence of the heart on the right side and a heterogeneous opacity on the right side.
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actino-man · 2 years ago
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VESTIBULAR SCHWANNOMA
Vestibular Schwannoma is known as benign category of tumor also named as Acoustic Neuroma. Actually it is a schwann cell derived tumor and mostly found in vestibular region of eighth cranial nerve. These are generally slow growing tumors and unilateral in more than 90 % of cases, presenting in left and right side equally. Progressive hearing loss is the most common symptom which will lead us to diagnosis.
STEREOTACTIC RADIATION SURGERY (SRS) is a most possible first line treatment in patients with newly diagnosed small to medium sized vestibular Schwannomas, no significant brainstem compression, and reasonably well preserved hearing. SRS is suitable choice for patients who desires preservation of neurological function (cochlear, facial nerve) and High rate of tumor growth control.
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drnavneetagrawal · 12 days ago
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Dr. Navneet Agrawal: The Best Neuro Surgeon in Jaipur for Brain Tumor Treatment
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Why Choose Dr. Navneet Agrawal for Brain Tumor Treatment in Jaipur?
1. Expertise and Experience Dr. Navneet Agrawal is a highly qualified and experienced neurosurgeon with years of practice in the field of brain and spine surgeries. He specializes in the diagnosis, treatment, and management of brain tumors, ensuring that each patient receives the most appropriate and effective care. His vast knowledge, combined with his experience, allows him to handle even the most complex cases of brain tumors with ease.
2. Cutting-edge Technology and Techniques One of the key factors that set Dr. Agrawal apart is his commitment to staying updated with the latest advancements in neurosurgery. He uses state-of-the-art technology and minimally invasive techniques to perform brain tumor surgeries, reducing the risk of complications and improving recovery times. His approach to brain tumor treatment ensures that patients experience the highest level of care possible.
3. Comprehensive Care Brain tumor treatment is not just about surgery. Dr. Agrawal emphasizes a comprehensive approach to care, focusing on early detection, accurate diagnosis, and a tailored treatment plan for each patient. He works closely with a multidisciplinary team to ensure that all aspects of a patient’s health are considered, from surgery to post-operative care and rehabilitation.
4. Patient-Centric Approach Dr. Agrawal’s philosophy revolves around the well-being of his patients. He takes the time to explain the diagnosis and treatment options, ensuring that patients and their families understand the process fully. His empathetic and reassuring manner helps alleviate the stress and anxiety often associated with brain tumor diagnosis and treatment.
What is Brain Tumor Treatment in Jaipur Like?
In Jaipur, the treatment of brain tumors involves a multi-step process that includes diagnosis, treatment planning, surgery, and post-operative care. Dr. Agrawal ensures that patients receive a personalized treatment plan tailored to their specific condition. Here’s an overview of the typical steps involved in brain tumor treatment under his care:
1. Initial Consultation and Diagnosis The first step in brain tumor treatment is a thorough consultation with Dr. Agrawal. During this session, the doctor takes a detailed medical history, conducts a physical examination, and orders necessary tests such as CT scans, MRIs, or biopsy, to accurately diagnose the type and size of the tumor.
2. Treatment Planning Once a diagnosis is made, Dr. Agrawal creates a customized treatment plan that may involve surgery, chemotherapy, radiation therapy, or a combination of these methods. He ensures that every option is considered to provide the best outcome for the patient’s health.
3. Brain Tumor Surgery Dr. Agrawal uses advanced surgical techniques to remove the brain tumor with precision, minimizing damage to surrounding healthy tissue. His expertise in performing complex surgeries ensures that patients receive the most effective and safest procedures available.
4. Post-Surgery Care After the surgery, Dr. Agrawal provides detailed instructions for post-operative care. He closely monitors the patient’s recovery and may recommend physical therapy or other treatments to aid in the healing process. His follow-up care ensures that the patient’s health is restored as smoothly and efficiently as possible.
Types of Brain Tumors Treated by Dr. Navneet Agrawal
Dr. Agrawal is skilled in treating various types of brain tumors, including but not limited to:
Gliomas
Meningiomas
Pituitary Tumors
Metastatic Brain Tumors
Acoustic Neuromas
Cerebellar Tumors
Each of these brain tumors requires specialized care and an individualized approach. Dr. Agrawal’s extensive experience enables him to treat these conditions with the utmost precision.
Why Jaipur is a Preferred Destination for Brain Tumor Treatment
Jaipur has become a leading hub for medical tourism in India, especially for complex procedures like brain tumor treatment. The city is home to some of the best healthcare facilities and highly skilled neurosurgeons like Dr. Navneet Agrawal. Patients from across the country and beyond prefer coming to Jaipur for brain tumor treatment due to its advanced medical infrastructure, affordability, and the expertise available in the city.
Conclusion
When it comes to brain tumor treatment in Jaipur, Dr. Navneet Agrawal is a trusted name, offering world-class care with the latest advancements in medical technology. Whether you’re dealing with a benign or malignant brain tumor, Dr. Agrawal’s personalized approach ensures that you receive the best treatment possible for your condition. If you or a loved one are in need of expert care for a brain tumor, consult with Dr. Agrawal for a comprehensive treatment plan tailored to your specific needs.
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alphasurgical · 2 months ago
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Understanding Facial Nerve Tumors: Symptoms, Diagnosis, and Treatment
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Facial nerve tumors, although rare, can significantly impact a person’s quality of life. These tumors often arise on the facial nerve, which controls the muscles of facial expression, as well as the sense of taste and some functions of the ear. Understanding the symptoms and treatment options available is crucial for those affected.
The most common type of facial nerve tumor is a vestibular schwannoma, also known as an acoustic neuroma. Symptoms may include gradual hearing loss, tinnitus (ringing in the ears), and balance issues. Patients might also experience facial weakness or numbness, as the tumor grows and puts pressure on the facial nerve.
Diagnosing a facial nerve tumor typically involves a comprehensive evaluation that includes a detailed medical history, physical examination, and imaging studies like MRI scans. These tests help determine the tumor's size, location, and potential impact on surrounding structures.
Treatment options depend on the tumor's size, location, and the symptoms presented. In some cases, observation may be recommended, especially for small tumors that do not cause significant symptoms. For larger tumors, surgical removal may be necessary. Surgery can be complex, as it involves navigating delicate structures in the head and neck. In addition to surgery, radiation therapy may be used to shrink the tumor or prevent its growth.
Early diagnosis and appropriate treatment are essential for managing facial nerve tumors effectively. If you experience any concerning symptoms, consult a healthcare professional for a thorough evaluation and personalized treatment plan. Taking proactive steps can help preserve facial function and improve overall quality of life.
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Discover advanced treatment options for Acoustic Neuroma at India's leading hospitals, renowned for their cutting-edge technology and expert surgeons. Whether you need microsurgery, radiosurgery, or a combination approach, our specialists provide personalized care to ensure the best outcomes. With success rates exceeding 90%, patients worldwide trust India for high-quality, affordable care.
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spineandneurosurgeryindia · 5 months ago
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Navigating Neurological Care with Dr. Sandeep Vaishya
Overview:
Gamma Knife® radiosurgery, commonly referred to as stereotactic radiosurgery, is a specialized form of radiation therapy employed to treat various brain conditions. Contrary to what the name suggests, this technique does not require any surgical opening of the brain. The term "blades" in the gamma "knife" refers to the precisely directed beams of gamma ray radiation. As many as 192 beams can be meticulously concentrated on the specific lesion or targeted region within the brain. This high degree of focus minimizes damage to the adjacent healthy tissue.
What conditions does Gamma Knife® radiosurgery treat?
Gamma Knife® radiosurgery is an effective treatment option for various neurological conditions, including:
 • Acoustic neuroma, which is a benign tumor that forms around the nerves responsible for balance and hearing, linking the inner ear to the brain.
• Arteriovenous malformations (AVMs), characterized by irregular and tangled blood vessel formations.
• Brain tumors of different types.
• Tremors associated with essential tremor or Parkinson’s disease.
• Trigeminal neuralgia, a chronic condition impacting a specific facial nerve, resulting in severe pain.
• Certain forms of epilepsy.
Benefits of getting treated by best gamma knife radiosurgeons of India
Best gamma knife radiosurgeons of India rank among the finest globally. Their exceptional skills and vast experience in managing a variety of intricate cases distinguish them from their international peers. A significant number of Best Gamma Knife Radiosurgeons of India have pursued education and training overseas, and they consistently enhance their knowledge by staying abreast of the latest developments in medical technology and gamma knife surgery. Additionally, many possess considerable experience in performing surgeries in other nations.
These highly skilled and best gamma knife radiosurgeons of India are adept medical practitioners who employ advanced techniques to deliver outstanding outcomes for their patients. Individuals who opt for affordable neurosurgery in India often return home with a sense of fulfillment, as reflected in the remarkable success rates achieved by the best gamma knife radiosurgeons of India. The impressive outcomes they provide draw an increasing number of international patients each year who seek the expertise of the best gamma knife radiosurgeons of India.
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Sandeep Vaishya the top gamma knife radiosurgery neurosurgeons in India
Dr Sandeep Vaishya best neurologist Delhi is proud to provide the gamma knife perfexion, a noninvasive technology specifically engineered to address various brain disorders, including brain tumors and brain cancer. Dr Sandeep Vaishya best neurologist Delhi offers highly effective and less invasive treatment methods that facilitate quicker recovery, allowing patients to regain functionality and return to their normal lives more swiftly. Dr Sandeep Vaishya best neurologist Delhi delivers personalized, high-quality care in a comfortable and modern environment for both patients and their families. The cost of gamma knife surgery with this expert is approximately 30 to 70 percent lower than that of similar procedures in developed countries.
This neurosurgeon is renowned for delivering world-class neurosurgical care, utilizing the latest advancements and minimally invasive techniques, such as deep brain stimulation, to manage a wide range of neurological conditions. With a strong focus on patient education, Dr. Sandeep Vaishya Best Neurologist Delhi provides compassionate and exceptional care for individuals suffering from both chronic and acute brain and spine injuries and disorders. As a distinguished neurosurgeon, Dr Sandeep Vaishya best neurologist Delhi is at the forefront of offering comprehensive, compassionate care through minimally invasive treatment options, effective pain management, and ongoing aftercare.
Why spine and Neurosurgery Service India is considered the best medical provider
Spine and Neurosurgery Service India is a distinguished clinical service provider in the country, committed to assisting patients and their families by facilitating visa arrangements, travel logistics, and transportation for surgical procedures, medical treatments, hospitalization, and accommodation in India. Our specialists prioritize patients' comfort, overseeing everything from airport pickup to hotel arrangements and identifying the most suitable hospitals. The essence of spine and neurosurgery service in India as a healthcare provider lies in simplifying the patient journey through personalized care during their medical travel, ensuring they receive effective treatment and a smooth recovery.
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bizzybloger · 6 months ago
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Minimally Invasive Brain Surgery Techniques
In the field of neurosurgery, minimally invasive techniques have revolutionized the treatment of various brain conditions, offering patients safer procedures, faster recovery times, and reduced risks compared to traditional open surgeries. These innovative approaches utilize advanced technology and specialized instruments to access and treat brain abnormalities with minimal disruption to surrounding tissues. Here’s an overview of some key minimally invasive brain surgery techniques:
1. Endoscopic Surgery
Endoscopic brain surgery involves the use of an endoscope—a thin, flexible tube with a camera and light source at its tip—to access and visualize the surgical site through small incisions in the skull or through natural openings in the body (such as the nose or mouth). This technique is commonly used for:
Pituitary Tumors: Endoscopic transsphenoidal surgery allows surgeons to access and remove pituitary tumors through the nasal passages, minimizing damage to surrounding structures.
Ventricular Conditions: Endoscopic third ventriculostomy (ETV) is used to treat hydrocephalus by creating a new pathway for cerebrospinal fluid (CSF) drainage within the brain ventricles.
2. Keyhole Surgery
Also known as minimally invasive neurosurgery (MIN), keyhole surgery involves making small (typically less than an inch) incisions in the scalp to access the brain. Through these keyholes, surgeons use specialized instruments and guidance systems to perform procedures such as:
Brain Tumor Resection: Keyhole craniotomy techniques allow surgeons to remove brain tumors while minimizing trauma to surrounding healthy brain tissue.
Clipping of Aneurysms: Keyhole approaches for aneurysm clipping involve accessing and securing the aneurysm without the need for larger traditional craniotomy incisions.
3. Stereotactic Radiosurgery
Stereotactic radiosurgery (SRS) delivers precisely targeted radiation to brain lesions or tumors while sparing healthy surrounding tissue. It is performed without incisions and is suitable for:
Brain Tumors: SRS can be used as a primary treatment or as an adjunct to surgical resection for certain tumors, including metastatic brain tumors and benign tumors like acoustic neuromas.
Arteriovenous Malformations (AVMs): SRS is effective in treating AVMs by delivering focused radiation to the abnormal blood vessels, causing them to gradually close off over time.
4. Laser Interstitial Thermal Therapy (LITT)
LITT is a minimally invasive technique that uses laser energy to precisely target and ablate brain lesions or tumors. During LITT procedures:
Precision Treatment: Laser probes are inserted through small burr holes in the skull, guided by real-time imaging (MRI or CT), to deliver focused heat energy to the target tissue.
Tumor Ablation: LITT is particularly useful for treating deep-seated brain tumors or lesions that are difficult to access with traditional surgery, while minimizing damage to nearby healthy brain tissue.
Benefits of Minimally Invasive Brain Surgery:
Reduced Trauma: Smaller incisions result in less trauma to the scalp, skull, and brain tissue, leading to reduced pain, shorter hospital stays, and faster recovery times.
Lower Risk of Complications: Minimally invasive techniques are associated with lower risks of infection, bleeding, and other surgical complications compared to traditional open surgeries.
Enhanced Precision: Advanced imaging techniques and surgical navigation systems enable surgeons to precisely target and treat brain abnormalities, improving overall treatment outcomes.
Conclusion
Minimally invasive brain surgery techniques represent a significant advancement in neurosurgery, offering patients effective treatment options with fewer risks and faster recovery. These techniques continue to evolve with advancements in technology and surgical expertise, expanding the scope of conditions that can be safely and effectively treated through minimally invasive approaches. If you or a loved one is facing a brain condition requiring surgery, consulting with a qualified neurosurgeon experienced in minimally invasive techniques can help determine the most appropriate treatment plan tailored to individual needs and circumstances.
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restorehearingnow · 7 months ago
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Exploring the Causes, Symptoms, and Treatments of Loud Ringing in the Ears
The experience of loud ringing in the ears, medically known as tinnitus, can be both distressing and disruptive to daily life. This auditory phenomenon affects millions of people worldwide and can vary in intensity and duration. While some may experience it as a temporary inconvenience, for others, it can be a chronic condition that significantly impacts their quality of life. This blog post aims to explore the causes, symptoms, and available treatment options for tinnitus, providing a comprehensive understanding of this condition.
What is Tinnitus?
Tinnitus is the perception of sound when no external sound is present. It is often described as ringing, but it can also manifest as buzzing, hissing, whistling, or clicking. The sound can be continuous or intermittent and may affect one or both ears. Tinnitus itself is not a disease but a symptom of an underlying condition.
Causes of Tinnitus
The causes of tinnitus are varied and can be linked to several different factors. Understanding these causes is crucial in managing and treating the condition effectively.
Hearing Loss
Age-Related Hearing Loss: As people age, they often experience a gradual decline in hearing. This loss of hearing can trigger tinnitus.
Noise-Induced Hearing Loss: Exposure to loud noises, whether from occupational environments, concerts, or personal audio devices, can damage the tiny hair cells in the inner ear, leading to tinnitus.
Ear Infections and Blockages
Ear infections or blockages caused by earwax, foreign objects, or fluid can create pressure on the ear drum or inner ear, resulting in tinnitus.
Ear Bone Changes
Otosclerosis, a condition that affects the bones in the middle ear, can cause tinnitus due to abnormal bone growth that hinders sound transmission.
Medications
Certain medications, known as ototoxic drugs, can cause or exacerbate tinnitus. These include specific antibiotics, diuretics, nonsteroidal anti-inflammatory drugs (NSAIDs), and chemotherapy agents.
Head and Neck Injuries
Trauma to the head or neck can affect the auditory nerves, inner ear, or brain function related to hearing, leading to tinnitus.
Other Health Conditions
Conditions such as Meniere's disease, temporomandibular joint (TMJ) disorders, acoustic neuromas, high blood pressure, and diabetes are also linked to the development of tinnitus.
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Symptoms of Tinnitus
The primary symptom of tinnitus is the perception of sound in the absence of an external noise source. However, the characteristics of this sound can vary widely:
Volume and Pitch: Tinnitus can be high-pitched or low-pitched, and its volume can range from a soft background noise to a loud, overwhelming sound.
Persistence: The sound may be constant, or it may come and go.
Uni/Bilateral: Tinnitus can affect one ear or both ears simultaneously.
In some cases, tinnitus may be accompanied by other symptoms such as hearing loss, dizziness, or pressure in the ears.
Diagnosing Tinnitus
Diagnosing tinnitus involves a comprehensive evaluation by a healthcare professional, typically an audiologist or an otolaryngologist (ear, nose, and throat specialist). The diagnostic process may include:
Hearing Tests: Audiometric tests to assess hearing loss.
Imaging: MRI or CT scans to check for abnormalities in the ear structure or auditory pathways.
Medical History: Reviewing the patient's medical history, including medications and exposure to noise.
Treatment Options for Tinnitus
While there is no definitive cure for tinnitus, various treatment options can help manage the symptoms and improve the quality of life for those affected.
Sound Therapy
White Noise Machines: These devices produce background noise that can mask the ringing in the ears.
Hearing Aids: For individuals with hearing loss, hearing aids can amplify external sounds and reduce the perception of tinnitus.
Cognitive Behavioral Therapy (CBT)
CBT can help individuals manage the emotional and psychological impact of tinnitus. It focuses on changing negative thought patterns and developing coping strategies.
Tinnitus Retraining Therapy (TRT)
TRT combines sound therapy with counseling to help individuals habituate to the tinnitus sound, reducing its perceived intensity over time.
Medications
While there is no medication specifically for tinnitus, certain drugs may help reduce the severity of symptoms. Antidepressants and anti-anxiety medications can be effective for some patients.
Lifestyle and Home Remedies
Stress Management: Reducing stress through relaxation techniques, such as meditation and yoga, can alleviate tinnitus symptoms.
Diet and Exercise: Maintaining a healthy diet and regular exercise can improve overall well-being and potentially reduce tinnitus.
Avoiding Triggers: Identifying and avoiding potential triggers, such as caffeine, nicotine, and loud noises, can help manage symptoms.
Alternative Therapies
Some individuals find relief through acupuncture, hypnosis, or nutritional supplements, though these approaches may lack scientific backing and vary in effectiveness.
Coping with Tinnitus
Living with tinnitus can be challenging, but there are strategies to help cope with the condition:
Support Groups: Joining a tinnitus support group can provide emotional support and practical advice from others experiencing similar challenges.
Education: Understanding tinnitus and staying informed about new treatments and coping strategies can empower individuals to manage their condition effectively.
Professional Help: Seeking help from audiologists, psychologists, or other healthcare professionals specializing in tinnitus can provide tailored treatment plans and support.
Conclusion
Tinnitus, or loud ringing in the ears, is a common condition that can significantly impact an individual's quality of life. By understanding the causes, symptoms, and available treatment options, those affected can take proactive steps to manage their tinnitus effectively. While there is no one-size-fits-all solution, a combination of medical, therapeutic, and lifestyle interventions can help mitigate the symptoms and improve overall well-being. If you or someone you know is struggling with tinnitus, consider reaching out to a healthcare professional for a thorough evaluation and personalized treatment plan. Click Here
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drpriya · 9 months ago
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Stereotactic radiosurgery is used in various medical applications, including:
Brain Tumors: It's effective for treating both benign and malignant brain tumors, including metastatic brain tumors.
Arteriovenous Malformations (AVMs): AVMs are abnormal tangles of blood vessels in the brain, and radiosurgery can help shrink them or stop their growth.
Trigeminal Neuralgia: This is a condition causing severe facial pain, and radiosurgery can be used to target the nerve responsible for the pain.
Acoustic Neuromas: These are noncancerous tumors that develop on the nerve leading from the inner ear to the brain, and radiosurgery can be an option for treatment.
Pituitary Tumors: Stereotactic radiosurgery can be used for small pituitary tumors, especially when surgery is not suitable or as an adjunct to surgery.
Spinal Tumors: It's also used to treat tumors in the spine, particularly those that are difficult to reach with conventional surgery.
Movement Disorders: In some cases of movement disorders like essential tremor or Parkinson's disease, stereotactic radiosurgery can help alleviate symptoms by targeting specific brain regions.
While stereotactic radiosurgery is generally considered safe and effective, there can be side effects, which may vary depending on the location and size of the treated area.
Some potential side effects include:
Fatigue: Patients may experience fatigue during and after treatment, which can persist for several weeks.
Headache: Some patients may experience headaches following treatment, though these are usually mild and temporary.
Nausea and vomiting: These symptoms may occur, especially if the treatment is targeting areas near the brainstem.
Hair loss: Radiation to the head may cause temporary hair loss in the treated area.
Skin changes: The skin in the treated area may become red, irritated, or sensitive.
Swelling: Swelling in the brain or surrounding tissues can occur, leading to temporary symptoms such as dizziness or vision changes.
Cognitive changes: In some cases, especially when treating brain tumors, patients may experience cognitive changes such as memory problems or difficulty concentrating.
Radiation necrosis: This is a rare but serious complication where healthy tissue near the treated area can become damaged by radiation, leading to neurological symptoms.
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jcsmicasereports · 3 months ago
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In Hindsight, A Deafening Diagnosis by Ecler Jaqua in Journal of Clinical Case Reports Medical Images and Health Sciences
Abstract
Dizziness is a common presentation to the outpatient, primary care physician. Its persistence, associated with hearing changes, should prompt further evaluation for more rare diagnoses such as an acoustic neuroma. Although not malignant, timely management of an acoustic neuroma is essential to prevent chronic facial paresthesia, pain, or taste disturbance, and more rarely death.
CASE PRESENTATION
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A 34-year-old female presents to the primary care physician with a 2-week history of fatigue, generalized headache, intermittent right-sided tinnitus, and dizziness that started abruptly after a dental procedure. Tinnitus is high-pitched and most often noted in the morning. The dizziness occurs mainly when changing from a supine to seated position. She has no pertinent medical history, engages in regular cardiovascular exercise but is plagued with an addiction to coffee, approximately 3 cups a day. She denies taking any medications or over-the-counter supplements.
Physical exam, including vital signs and orthostatic blood pressure measurement, is unremarkable. Differential diagnoses included benign positional vertigo and caffeine-induced headache. Plan was to obtain an audiogram, keep a headache diary, decrease caffeine consumption, and improve hydration on days of exercise.
While awaiting the audiogram, the patient presented again to her primary care physician for worsening fatigue and self-diagnosed anxiety, in addition to her stable dizziness, tinnitus, and headache. Physical exam was, once again, unremarkable. Differential diagnoses were expanded to include anemia, thyroid disorder, and vestibular migraine. Plan was to trial sumatriptan and begin laboratory evaluation for her fatigue and hair loss. Labs were unremarkable for anemia, electrolyte or vitamin imbalance, and thyroid disorder.
Almost one year later, the patient returns with persistent symptoms of fatigue, anxiety, tinnitus, dizziness, and intermittent headaches. She reports that her symptoms were overwhelming and affected all aspects of her life, not relieved with the sumatriptan. Physical exam, once again, was unremarkable. Differential diagnoses were again expanded to include Meniere’s disease, intracranial mass, and somatization disorder. Plan was to obtain the previously ordered audiogram, non-urgent magnetic resonance imaging (MRI) of her brain, and consultations with Psychology for coping techniques and Otolaryngology for her tinnitus and dizziness.
THE DIAGNOSIS
The audiogram was notable for asymmetric hearing loss (Fig 1) and subsequent imaging with MRI Brain confirmed the diagnoses of a 5mm intracanalicular tumor, suggestive of acoustic neuroma (Fig 2). The patient was offered proton therapy but elected for definitive, surgical intervention with Neurosurgery. She underwent translabyrinthine resection of the intracanalicular acoustic neuroma. Her postoperative course was complicated by facial weakness but resolved after one year. Follow-up imaging confirmed complete tumor resection and she continues to do well two years after surgery, without recurrence of the acoustic neuroma.
THE DISCUSSION
Headaches, dizziness, and tinnitus are challenging concerns because the differential diagnoses are quite broad. In this case, since the patient presents often, the symptoms were more likely to be acute and the more common diagnoses of benign paroxysmal positional vertigo, vestibular migraine, and caffeine-induced headache were considered. As the symptoms became more persistent, the clinician correctly broadened the differential diagnoses list and requested the appropriate imaging and specialty follow-up.
This patient’s diagnosis, a right-sided acoustic neuroma, was delayed by poor follow-up and procrastination in obtaining the audiogram.  Fortunately, the acoustic neuroma is a slow-growing, benign tumor that develops from schwannoma cells along the branches of cranial nerve VIII, the vestibulocochlear nerve.1 Acoustic neuroma is also known as vestibular neuroma or schwannoma, most commonly affecting individuals between 65 and 74 years old with a prevalence of 1 in 100,000.2,3,4 The most common risk factor is having a history of neurofibromatosis type 2 or exposure to high-dose radiation.5 Increased prevalence, over the last several years, has been attributed to advanced imaging technology.3 Although it is a slow-growing tumor, its growth can compresses the facial and trigeminal nerves causing facial paresthesia, pain, and taste disturbance.6 Rarely, the tumor can compress the brainstem and cause death.6,7 It can be monitored for growth or treated with radiation and/or surgery.
THE TAKEAWAY
Unfortunately, the etiology of patients’ concerns cannot always be determined. But, it should be the responsibility of the primary care physician to evaluate potentially life-threatening conditions for persistent symptoms. This case demonstrates balancing the common with the uncommon differential diagnoses and illustrates the patient’s role in adherence to the treatment plan. Although headaches, dizziness, and tinnitus are non-specific symptoms, the persistence of them should warrant further investigation with more advanced imaging and specialty consultation.
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brainspinemd02 · 10 months ago
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Beyond the Scalpel: Exploring CyberKnife® Robotic Radiosurgery Innovations
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Introduction:
Traditional surgery has long been the standard for treating various medical conditions, but technological advancements have opened new frontiers in non-invasive interventions. CyberKnife® Robotic Radiosurgery stands at the forefront of these innovations, offering a precise and targeted approach to treating tumors and other medical conditions without the need for a scalpel. This article delves into the intricacies of CyberKnife® Robotic Radiosurgery, exploring its principles, applications, benefits, and the transformative impact it has had on modern medical practices.
Understanding CyberKnife® Robotic Radiosurgery:
Principles of CyberKnife®: CyberKnife® Robotic Radiosurgery is a state-of-the-art, non-invasive treatment technique that combines robotics and advanced radiation therapy. It employs a robotic arm to deliver highly focused beams of radiation directly to the target area, guided by real-time imaging technology. This precision allows for the irradiation of tumors with minimal impact on surrounding healthy tissues.
Robotic Precision: The robotic arm of the CyberKnife® system provides unparalleled precision in targeting tumors or lesions. It continuously adjusts the position of the radiation delivery device in response to the patient's movements during treatment, ensuring accuracy comparable to traditional surgical procedures.
Real-Time Imaging: CyberKnife® utilizes real-time imaging, such as X-rays and cone-beam CT scans, to track and monitor the position of the tumor and surrounding structures. This dynamic tracking system enables the delivery of radiation beams with sub-millimeter accuracy, adapting to any movement or changes in the patient's position during the treatment session.
Applications of CyberKnife® Robotic Radiosurgery:
Cancer Treatment: CyberKnife® has emerged as a powerful tool in cancer treatment, targeting tumors with precision while minimizing damage to healthy tissues. It is particularly effective for tumors in challenging locations, such as the brain, spine, lungs, liver, and pancreas. CyberKnife® can be used as a primary treatment modality or in conjunction with other therapies, offering a non-invasive alternative for certain cancer cases.
Benign Tumors and Lesions: Beyond cancer, CyberKnife® is employed for the treatment of benign tumors and lesions. Conditions such as acoustic neuromas, meningiomas, and arteriovenous malformations (AVMs) can be effectively treated with this non-invasive approach, sparing patients from traditional surgery and its associated risks.
Functional Disorders: CyberKnife® has shown promise in addressing functional disorders, such as trigeminal neuralgia. By precisely targeting the affected nerve pathways, it can alleviate pain and improve the quality of life for individuals suffering from these challenging conditions.
Benefits of CyberKnife® Robotic Radiosurgery:
Non-Invasiveness: One of the primary advantages of CyberKnife® is its non-invasive nature. Unlike traditional surgery, which requires incisions and carries inherent risks, CyberKnife® delivers targeted radiation without cutting into the body. This results in reduced trauma, minimal scarring, and quicker recovery times for patients.
Precision and Accuracy: The robotic precision and real-time imaging capabilities of CyberKnife® contribute to exceptional accuracy in targeting tumors. This precision allows for the delivery of high doses of radiation to the intended area while sparing adjacent healthy tissues, minimizing the risk of complications and side effects.
Flexibility and Adaptability: The adaptability of CyberKnife® to the patient's movements during treatment sessions enhances its flexibility. This is particularly beneficial for conditions in which the target area may shift, such as lung tumors affected by respiratory motion. The system continuously tracks and adjusts to these movements, ensuring precise radiation delivery.
Reduced Treatment Sessions: CyberKnife® often requires fewer treatment sessions compared to traditional radiation therapy. The precise targeting allows for higher doses of radiation to be delivered in each session, potentially reducing the overall duration of treatment. This is advantageous for patient convenience and comfort.
Minimal Recovery Time: The non-invasive nature of CyberKnife® translates into minimal recovery time for patients. Unlike traditional surgeries that may involve extended hospital stays and a prolonged recovery period, individuals undergoing CyberKnife® treatment can typically resume their daily activities shortly after each session.
Quality of Life Improvement: The precise and targeted nature of CyberKnife® contributes to an improved quality of life for patients. By effectively treating tumors and lesions while minimizing damage to healthy tissues, individuals experience fewer side effects and a faster return to normalcy.
Conclusion:
CyberKnife® Robotic Radiosurgery represents a paradigm shift in the treatment of tumors and various medical conditions. Its innovative combination of robotics and advanced radiation therapy offers a non-invasive alternative to traditional surgery, providing precise and targeted treatment with minimal impact on surrounding healthy tissues. From cancer to benign tumors and functional disorders, CyberKnife® has demonstrated its efficacy across diverse medical scenarios.
The benefits of CyberKnife® extend beyond its non-invasiveness and precision. The flexibility of the system, reduced treatment sessions, minimal recovery time, and overall improvement in the quality of life for patients underscore its transformative impact on modern medical practices. As technology continues to advance, CyberKnife® Robotic Radiosurgery stands as a beacon of innovation, offering hope and a new frontier in the quest for effective, patient-centric, and minimally invasive medical interventions. In the realm of medical advancements, CyberKnife® Robotic Radiosurgery has emerged as a beacon of progress, reshaping the landscape of treatment options and providing a bridge to a future where non-invasive precision becomes the cornerstone of medical care.
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alphasurgical · 8 months ago
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Why Cut Facial Nerve Procedure Is Done by Surgeons
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The facial nerve or cranial nerve VII is the most vital nerve to control the facial expressions. It plays a crucial role in transmitting taste sensations from the anterior two-thirds of the tongue. You will notive varied change like facial paralysis, tumor, and other issues that may cause cut facial nerve.
One such is facial paralysis treatment. Facial nerve surgery, such as facial nerve decompression or neurectomy, might be necessary to alleviate symptoms of facial paralysis. Conditions like Bell's palsy or facial nerve trauma can lead to debilitating facial weakness or paralysis, impacting a person's quality of life. By cut facial nerve – mainly the affected nerve, surgeons can sometimes alleviate pressure or remove damaged portions, allowing for improved function and possibly even facial movement restoration.
Cut Facial Nerves for Tumor Management
In cases where benign or malignant tumors affect the facial nerve, surgical intervention may involve cutting a portion of the nerve to remove the tumor safely. This procedure aims to eliminate or reduce the tumor's impact while preserving as much nerve function as possible. Tumors like acoustic neuromas or facial nerve schwannomas often necessitate delicate surgical techniques to minimize nerve damage.
Chronic facial pain syndromes, such as trigeminal neuralgia, can significantly impair a person's daily life. In some cases, cutting the affected branches of the facial nerve through procedures like rhizotomy or neurolysis can help alleviate pain signals and improve the individual's comfort and function.
While the idea of cutting a nerve may sound drastic, in many medical scenarios, it becomes a necessary step to alleviate symptoms, manage tumors, or reduce pain. These procedures often involve skilled surgeons employing precise techniques to achieve the best possible outcomes for patients facing various facial nerve-related issues. You are advised to consult with medical professionals to explore the best treatment options tailored to individual circumstances.
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hello-delveinsight · 1 year ago
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Acoustic Neuroma Market Growth Anticipated | Oticon Medical, Novartis, Med-El Corporation, Elekta, Natus Medical, Amgen, AstraZeneca, Siemens Healthcare
To strategically aid Acoustic Neuroma companies developing drugs for Acoustic Neuroma, DelveInsight launched a report titled as “Acoustic Neuroma Market Insight Epidemiology and Market Forecast, 2032”. This comprehensive report delves into epidemiology based market analysis, providing a roadmap for success in the dynamic landscape of Acoustic Neuroma market.
Get a free sample of “Acoustic Neuroma Market Report”
Acoustic Neuroma Market Report’s Key Highlights:
Acoustic Neuroma market is expected to grow during the study period in 7MM.
Key Acoustic Neuroma Companies: Oticon Medical, Novartis Pharmaceuticals, Med-El Corporation, Elekta, Natus Medical Incorporated, Amgen, AstraZeneca, Siemens Healthcare, and others.
Acoustic Neuroma is estimated to affect 1 in 100,000 people in the general population
Acoustic Neuroma is responsible for 6 in 100 cases of brain tumors
The prevalence of Acoustic Neuroma is more common in middle-aged adults and rare in children
Acoustic Neuroma tends to affect the people aged 30 to 6 and usually has no obvious cases, neither there are any symptoms of cancer in the early stages.
The Acoustic Neuromamarket is expected to surge due to the disease’s increasing prevalence and awareness during the forecast period. Furthermore, launching various multiple-stage Acoustic Neuroma pipeline products will significantly revolutionize the Acoustic Neuroma market dynamics
Acoustic Neuroma Country based Treatment Analysis: 
The Acoustic Neuroma treatment market report provides treatment regimen across the 7MM. It will help companies to analyse the practices followed across 7MM, patient journey and advances in Acoustic Neuroma Therapies that have the potential to transform treatment paradigms and improve patient outcomes.
Acoustic Neuroma is a slowly growing non-cancerous tumor that forms along the branches of the eighth cranial nerve. These nerves start from the brain to the inner ear and to other divisions of the body that plays an important role in healing and balancing the body.
If Acoustic Neuroma is diagnosed in the early stages then the tumor can be stopped from further growing, but in case the tumor has already gone bigger than it can cause a life-threatening build-up of fluid in the brain.
Acoustic Neuroma Symptoms:
The symptoms of Acoustic Neuroma includes a gradual loss in hearing, ringing in the affected ear, dizziness, difficulty in balancing, facial numbness and weakness
Download the report to understand which factors are driving Acoustic Neuroma epidemiology trends @ Acoustic Neuroma Epidemiology Forecast
Acoustic Neuroma Epidemiology Insights:                 
The report proffers historical and forecasted epidemiology insights that helps to understand the target patient population for Acoustic Neuroma. The analysis is from 2019-2032, providing insights how the patient trends are going to shape the market dynamics. Further, the epidemiology is segmented to provide in-depth analysis of patient pools allowing companies to understand their target patient’s pools. The epidemiology in report is segmented as: 
Acoustic Neuroma Epidemiology Segmentation:
Total Prevalence of Acoustic Neuroma
Prevalent Cases of Acoustic Neuroma by severity
Gender-specific Prevalence of Acoustic Neuroma
Diagnosed Cases of Episodic and Chronic Acoustic Neuroma
“Assessments as per DelveInsight’s analysts shows that the prevalence of Acoustic Neuroma is more common in middle-aged adults and rare in children”
Acoustic Neuroma Pipeline Therapies:
Nilotinib
Aspirin
Bevacizumab
Gentamicin
Axitinib
Emerging Acoustic Neuroma drugs Uptake:
In June 2023: A clinical trial is expected to initiate with 36 participants to evaluate the efficacy of microsurgical resection of vestibular schwannoma and stereotactic radiosurgery. The trial is sponsored by the Medical College of Wisconsin, United States.
In May 2022: The Brain Foundation, Australia, funded a project led by researchers at the University of Newcastle to develop an innovative target therapy for treating acoustic neuroma.
To know more about Acoustic Neuroma companies working in the treatment market, visit @ https://www.delveinsight.com/sample-request/acoustic-neuroma-market
Acoustic Neuroma Market Forecast:
The research includes a thorough analysis of the past and projected markets for Acoustic Neuroma, which includes pharmacological outreach in the 7MM nations.
The dynamics of the Acoustic Neuroma market are anticipated to change in the coming years owing to the expected launch of emerging therapies such as Bevacizumab, Axitinib, and others during the forecasted period 2019-2032.
Rising prevalence, increasing prevalence, less competition for upcoming therapies and Companies shifting their focus to this area, despite low awareness of the disease are fuelling the Acoustic Neuroma Market.
Discover more about therapies set to grab major Acoustic Neuroma market share @ https://www.delveinsight.com/sample-request/acoustic-neuroma-market
DelveInsight’s report offers comprehensive insights, market analysis, and forecasts aiding leading companies in strategic decision-making for the Acoustic Neuroma market landscape.
Gain Competitive Edge in Indication Market: Understand the current landscape of the Acoustic Neuroma market, including the competitive environment, key companies developing drugs for Acoustic Neuroma, and their strategies. By analyzing Acoustic Neuroma market dynamics, treatment approaches, and emerging therapies, stakeholders can identify opportunities to position themselves effectively, gaining a competitive edge over others.
Identify Market Gaps and indication market opportunities: Analysing Acoustic Neuroma epidemiological trends, country wise patient journeys and existing treatment practices can helps in identifying gaps and opportunities within the Acoustic Neuroma market. This involves recognizing areas where current Acoustic Neuroma treatments may be insufficient or where there is an unmet need. The Acoustic Neuroma market report is curated by taking account of various KOLs dealing with Acoustic Neuroma. Identifying these gaps allows stakeholders to explore new therapeutic avenues, potentially leading to the development of novel treatments that address specific Acoustic Neuroma market needs and price their emerging products strategically to gain a competitive edge.
Strategic decision making : Armed with insights from epidemiological and market forecasts, stakeholders can make informed and strategic decisions. This may involve deciding on research and development investments, portfolio expansion, pricing – reimbursement strategies, partnerships, or other strategic moves. Understanding the Acoustic Neuroma market dynamics enables stakeholders to align their goals with the prevailing trends and future projections.
Plan RoadMap to Success : Through this report the leading Acoustic Neuroma companies can set short-term and long-term goals, define strategies for market penetration, and outline steps for product development or market expansion. A well-informed roadmap ensures that stakeholders navigate the complexities of the Acoustic Neuroma market with clarity and purpose.
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About DelveInsight 
DelveInsight is a leading Healthcare Business Consultant, and Market Research firm focused exclusively on life sciences. It supports Pharma companies by providing comprehensive end-to-end solutions to improve their performance.
It also offers Healthcare Consulting Services, which benefits in market analysis to accelerate the business growth and overcome challenges with a practical approach.
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Discover advanced treatment options for Acoustic Neuroma at India's leading hospitals, renowned for their cutting-edge technology and expert surgeons. Whether you need microsurgery, radiosurgery, or a combination approach, our specialists provide personalized care to ensure the best outcomes. With success rates exceeding 90%, patients worldwide trust India for high-quality, affordable care.
Topics Covered
What is Vestibular Schwannoma? What are the causes of Vestibular Schwannoma? What are the Symptoms of Acoustic Schwannoma? What are the Treatment options available for Acoustic Schwannoma? What are the types of Acoustic Schwannoma? Diagnosis & Investigations required to confirm these conditions. What is the follow up care required for these conditions? What is the Success rate and cost of managing these conditions in India Surgery & Radiotherapy?
Why Choose India?
Comprehensive Treatment Options: From Gamma Knife Radiosurgery to Microsurgical Resection.
Affordable Care: Save up to 70% compared to Western countries.
High Success Rates: Over 90% success in treatment.
Experienced Surgeons: Top specialists with decades of experience.
Causes of Acoustic Neuroma: Explore how genetic factors and environmental influences contribute to this condition and how timely intervention can save lives.
Choose India for your Acoustic Neuroma surgery and experience world-class medical care that combines expertise, affordability, and compassionate care.
👉 Follow for more health tips!
Social Media: / 61562610098718 / medicalcaresurgeryindia
Contact us: Medical Care & Surgery in India Call & Whatsapp Us: +91-9860755000, +91-9371136499, Email Us: [email protected]
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alaafiyahcare · 1 year ago
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What Is Cancer Radiation Treatment?
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Most common types of cancer respond positively to radiation therapy. It is used for many different types of cancers. Radiation Therapy will damage normal cells in the process of eradicating cancer cells. However, most normal cells will recover quickly from the treatment. The main goal of radiotherapy is to damage as many cancer cells as possible while minimizing damage to normal cells.
Please refer to the following pages for more information about specific cancer radiation treatments:
Brain Cancer Radiation Treatment
Liver Cancer Radiation Treatment
Lung Cancer Radiation Treatment
Pancreas Cancer Radiation Treatment
Spine Cancer Radiation Treatment
Radiation Therapy may be used prior to surgery in order to shrink tumors. It can also be used after surgeries to prevent a relapse of cancer cells. Radiation therapy has many applications and may be used either separately or in combination with other types of therapy such as hormone therapy or chemotherapy. For some types of tumors, it may be the only type of treatment needed.
Type of Radiation Therapy
CyberKnife: CyberKnife is the world’s first whole-body robotic radiosurgery system that can be used to treat multiple cancerous and non-cancerous conditions, namely prostate cancer, brain cancer, lung cancer, spine cancer, trigeminal neuralgia, etc. The radiation is delivered from multiple angles precisely to kill the cancer cells while sparing the surrounding healthy tissues. Through its real-time imaging feature, CyberKnife can track small changes in the tumor location, which is caused due to breathing or other bodily movements and adjust the radiation delivery accordingly.
Tomotherapy H: Tomotherapy H is an advanced image-guided radiation delivery system. It combines the benefits of computed tomography (CT scan) and linear accelerator. The real-time imaging guidance helps specialists plan the treatment accurately and deliver the high-dose radiation precisely to the target area. Tomotherapy H is capable of delivering up to 1000 beams of radiation traveling in straight lines or tangents from different directions and successfully destroying cancer cells. It is a non-invasive procedure, therefore there is no blood loss, long hospital stays, or prolonged recovery. Patients can continue with their day-to-day activities as they undergo their treatment.
TrueBeam: The TrueBeam is another unique radiation therapy system, which precisely delivers the radiation to destroy the tumor cells throughout the body while minimizing the damage to the surrounding healthy tissues. TrueBeam’s advanced imaging facility and treatment models allow the specialists to customize radiation delivery for each cancer case. It synchronizes radiation delivery with the imaging and thereby adjusts radiation delivery according to the smallest movement of the patient, including breathing. TrueBeam can deliver high dose radiation in a shorter duration, and this allows the specialists to shorten the overall treatment duration for the patients.
Versa HD: Versa HD is an all-in-one radiation delivery system, which delivers radiation with advanced stereotactic precision. Versa HD comes with sophisticated conformal beam-shaping technology and high dose rate mode delivery, which improves the precision and facilitates the speed necessary to deliver stereotactic radiotherapy (SRT) and stereotactic radiosurgery (SRS) techniques, which require superior accuracy in tumor targeting and protecting the internal organs.
Agility Synergy: The Agility Synergy is a linear accelerator, which allows specialists to deliver extremely accurate, image-guided adaptive radiotherapy safely, in very few sessions. Agility Synergy can treat cancer present in any part of the body with greater precision along with non-cancerous medical conditions like trigeminal neuralgia, meningioma, acoustic neuroma, etc.
Artiste with CT: The Artiste with CT is Asia’s first Image-Guided Radiation Therapy machine with CT-on-rails. Artiste has a significant role in making cancer treatment more precise while protecting the surrounding healthy tissues and having minimal side-effects. It carefully delivers the radiation beam wherein the target area receives the maximum dose while the healthy tissues receive less intense radiation. This positively impacts the treatment response and recovery among cancer patients.
Brachytherapy: Brachytherapy or internal beam radiation therapy allows specialists to treat cancers by placing a radiation source inside or very close to the tumor. Radiation emitted by this source kills the cancer cells over time. This helps in delivering high-dose radiation to the target while sparing the healthy tissues surrounding the tumor. Brachytherapy is used to treat a wide range of cancers, namely prostate cancer, bladder cancer, cervical cancer, vaginal cancer, rectum cancer, head & neck cancer, skin cancer, breast cancer, gallbladder cancer, uterine cancer, and eye cancer.
Hyperthermia: Hyperthermia is a treatment approach, where the cancer cells are exposed to heat up to 42°C. Best Hyperthermia is always used in combination with radiation therapy or anti-cancer drugs. Hyperthermia is helpful in the treatment of tumors on the skin, tumors of the head & neck region that may have spread to the lymph nodes, etc.
How Does Cancer Radiation Treatment Work?
Radiation Therapy is generally applied directly to a tumor. For this reason, it is considered to be a “localize” therapy. This means that it treats only a specific portion of the body. This is different from “systemic” types of therapies that travel throughout the entire body (such as chemotherapy).
During the procedure, the high-energy rays are aimed at the tumor from several different angles. This serves the purpose of avoiding damage to normal cells while providing a larger dose to the actual tumor. It also helps in allowing the rays to pass through the various layers of tissue and organs without damaging them.
Sometimes the radiation field may encompass small portions of normal tissue or other systems that are involved, such as surrounding lymph nodes. This is because the position of the tumor can sometimes be altered by many factors.
It is important that the entire malignant growth be treated with the rays. These forms of cancer radiation treatment are usually administered once or twice daily.
What are the Side Effects of Cancer Radiation Treatment?
Since radiation therapy inevitably results in damage to healthy cells along with the malignant growths, it can have undesirable side effects.
Depending on the location of the tumor, these may include: alopecia (hair loss), digestive problems, diarrhea, lung damage, urinary problems, changes in sexual function, and other radiation-associated effects.
Recovery Time is usually swift, as external beam radiation is usually an outpatient procedure.
Other forms of radiotherapy such as internal radiation therapy may require a few days of hospitalization after the procedure is completed. Side effects can last anywhere from weeks to months. This is considered to be much shorter than other forms of treatment such as chemotherapy.
ALAAFIYAH CARE is the prime provider of world-class medical tourism all over the globe. ALAAFIYAH has association with a wide network of high-standard hospitals and healthcare facilities across the globe that specializes in Oncology.
Our Hospitals house state-of-the-art technologies that help our specialists in achieving the best clinical outcomes
ALAAFIYAH provides all-round assistance for patients to travel abroad to various international destinations, such as Thailand, India, Malaysia, US, UK, etc. for effective ovarian affordable cancer treatment.
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indiamedicaltourism · 1 year ago
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CyberKnife Treatment in India
In the dynamic landscape of cancer treatment, innovative technology has brought in a new era of optimism and accuracy. The CyberKnife system is cutting-edge radiosurgery machinery that is reshaping the parameters of cancer care.
CyberKnife treatment is non-invasive and does not require incisions or surgery. It is a viable alternative to surgical procedures for both malignant and benign tumors in a variety of bodily areas, including the brain, prostate, lung, liver, spine, pancreas, kidneys, and even disorders such as trigeminal neuralgia. CyberKnife, a cutting-edge robotic radiosurgery technology, stands out for its unparalleled precision in delivering highly focused radiation with outstanding precision. Unlike traditional radiation therapy, CyberKnife allows for treatment completion in a matter of days, representing a significant improvement in cancer care.
The following are the main characteristics of CyberKnife treatment:
Accuracy and precision: CyberKnife use a lightweight linear accelerator mounted on a robotic arm and guided by real-time imagery. This enables pinpoint accuracy, delivering high-dose radiation to tumors while causing the least amount of damage to nearby tissues.
Non-Invasiveness: CyberKnife, as a non-invasive therapy, eliminates the need for surgery, providing patients with a pain-free option for treating challenging tumors.
Versatility: Because of CyberKnife’s versatility, it can treat tumors ranging from the brain and prostate to the lung, liver, spine, pancreas, kidneys, and trigeminal neuralgia.
Benefits of CyberKnife Treatment:
Painless Alternative: For patients with incurable or surgically complicated tumors, CyberKnife offers a pain-free alternative to surgery.
Precise and High-Dose Targeted Radiation: The system's real-time imaging and flexible robotic arm allow for the precision delivery of high-dose radiation beams from a variety of angles, reducing damage to healthy tissues.
Improved Patient Compliance: Patients who receive CyberKnife treatment report improved compliance with little to no side effects. Patients can continue their normal activities right after treatment.
CyberKnife Tumor Treatments:
Brain Tumors and Illnesses: CyberKnife has completely transformed the treatment of benign and malignant brain tumors, metastases, trigeminal neuralgia, acoustic neuromas, and arteriovenous malformations.
Spine Tumors: CyberKnife provides effective control and significant pain reduction in the treatment of spine tumors, including intramedullary, intradural, and spinal metastases.
Prostate Cancer: CyberKnife is widely utilized to treat low-to-intermediate-risk prostate cancer, with long-term cancer control and fewer adverse effects relating to sexual, urinary, and stool function.
India provides world-class CyberKnife treatments through its NABH and Joint Commission International accredited hospitals. India is an excellent option due to its advanced diagnostic facilities, skilled practitioners, affordable medical charges, and short waiting periods.Top hospitals in India have embraced this technology, providing patients with world-class, personalized cancer care.
Apollo Healthcare: Apollo Hospitals, with its worldwide reach, has emerged as a pioneer in introducing CyberKnife into its cancer treatment services. Patients benefit from individualized attention as well as access to cutting-edge technologies.
Max Healthcare: Max Healthcare, which is known for its innovation and patient-centered care, has added CyberKnife technology to its arsenal. This step demonstrates their commitment to providing cutting-edge cancer treatments.
Fortis Healthcare: Fortis Healthcare has integrated CyberKnife into its oncology services, demonstrating its dedication to comprehensive and cutting-edge cancer care.
The cost of CyberKnife treatment in India normally ranges from 6000 to 10,000 USD. The introduction of CyberKnife treatment in India represents a major change in cancer care. This revolutionary technology's precision, lack of invasiveness, and adaptability provide a ray of hope for patients seeking effective and focused treatment. With continued investments in modern medical technologies by healthcare institutions, CyberKnife reflects India's commitment to providing world-class healthcare. It provides the possibility of improved results and a higher quality of life for people dealing with cancer.
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