MRI exams are crucial for investigating fetal abnormalities, but past concerns have been expressed about whether the modality could affect intrauterine growth.
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Medical Imaging Technologist | UHS Distinctions holder |Experienced Online Tutor| Microsoft PowerPoint specialist
Radiology is at the heart of modern healthcare, offering advanced imaging technologies that enable precise diagnosis and effective treatment. Our comprehensive radiology services include: 1. X-ray: Rapidly diagnoses fractures, infections, and lung issues. 2. CT Scan: Provides detailed cross-sectional images for detecting tumors, internal injuries, and vascular conditions. 3. MRI: High-resolution images of soft tissues, crucial for brain, spine, and joint evaluations. 4. Ultrasound: Real-time imaging, essential for pregnancy monitoring and organ health assessments. 5. Nuclear Medicine: Uses radioactive materials to diagnose and treat diseases, particularly cancers. With these cutting-edge modalities, radiology plays a vital role in delivering accurate diagnoses and personalized treatment plans, ultimately enhancing patient care and outcomes. Embrace the power of radiology in transforming healthcare. #Radiology #HealthcareInnovation #MedicalImaging
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well done animation of the general overall process.
𝐇𝐨𝐰 𝐂𝐥𝐨𝐭 𝐢𝐬 𝐫𝐞𝐦𝐨𝐯𝐞𝐝 𝐟𝐫𝐨𝐦 𝐁𝐫𝐚𝐢𝐧 When a person suffers from a brain concussion, the risk of developing a blood clot in the brain increases. These clots can be dangerous, potentially leading to serious complications such as stroke or permanent brain damage if not promptly addressed. Removing a blood clot from the brain is a delicate procedure that requires precision and expertise. The primary method for removing a blood clot from the brain is through a surgical procedure called a craniotomy. During a craniotomy, a #neurosurgeon makes an incision in the scalp and removes a portion of the #skull to access the brain. Once the brain is exposed, the surgeon carefully identifies the location of the clot using imaging techniques such as CT scans or MRI. 𝐂𝐥𝐢𝐜𝐤 𝐇𝐞𝐫𝐞 𝐭𝐨 𝐆𝐞𝐭 𝐅𝐫𝐞𝐞 𝐏𝐃𝐅 𝐁𝐫𝐨𝐜𝐡𝐮𝐫𝐞: https://lnkd.in/gbX3HEV3 Once the clot is located, the #surgeon delicately extracts it using specialized tools, taking care not to cause further damage to the surrounding brain tissue. In some cases, a catheter may be used to suction the clot out of the brain, particularly if it is located in a deep or inaccessible area. After the clot has been removed, the neurosurgeon will carefully inspect the area to ensure that no additional #bleeding or damage has occurred. Once satisfied, the skull bone is replaced, and the incision is closed. In addition to surgical intervention, medications may also be administered to help dissolve the blood clot and prevent further clot formation. These medications, such as anticoagulants or antiplatelet #drugs, work to thin the blood and improve circulation, reducing the risk of additional clots forming. Recovery from a blood clot in the brain can vary depending on the severity of the injury and the individual's overall health. Some patients may experience lingering symptoms such as headaches, dizziness, or cognitive difficulties, which may require ongoing rehabilitation and therapy. Overall, the successful removal of a blood clot from the brain requires a multidisciplinary approach involving neurosurgery, imaging, and medical management. Timely intervention is crucial in minimizing the risk of complications and optimizing outcomes for patients with brain concussions and associated blood clots. #Bloodclot #clot #brain #future #medical #innovation
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Radiologists and healthcare professionals, enhance your understanding of endometriosis by checking out the recent expert consensus statement by SRU. This statement provides valuable insights on diagnosis and management of this condition. By utilizing a multidisciplinary approach and advanced US imaging methods, we can diagnose this condition sooner and improve outcomes for those experiencing fertility challenges. Stay up-to-date with the latest radiology news and techniques by reading this article. #radiologynews #USrad #healthnews #MPLTway #RSNA
New Consensus Statement Aims to Improve Endometriosis Evaluation
rsna.org
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When imaging children, the goal is to acquire the necessary diagnostic images without sedation and with the lowest possible radiation dose. NAEOTOM Alpha, the world’s first photon-counting CT scanner, offers fast, low-dose pediatric CT lung imaging without the need for breath-holding, while Quantum technology inherently provides monoenergetic images and additional information. #photoncounting #pediatricimaging See the impressive clinical cases here: https://lnkd.in/gJnZQ96b
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𝐇𝐨𝐰 𝐂𝐥𝐨𝐭 𝐢𝐬 𝐫𝐞𝐦𝐨𝐯𝐞𝐝 𝐟𝐫𝐨𝐦 𝐁𝐫𝐚𝐢𝐧 When a person suffers from a brain concussion, the risk of developing a blood clot in the brain increases. These clots can be dangerous, potentially leading to serious complications such as stroke or permanent brain damage if not promptly addressed. Removing a blood clot from the brain is a delicate procedure that requires precision and expertise. The primary method for removing a blood clot from the brain is through a surgical procedure called a craniotomy. During a craniotomy, a #neurosurgeon makes an incision in the scalp and removes a portion of the #skull to access the brain. Once the brain is exposed, the surgeon carefully identifies the location of the clot using imaging techniques such as CT scans or MRI. 𝐂𝐥𝐢𝐜𝐤 𝐇𝐞𝐫𝐞 𝐭𝐨 𝐆𝐞𝐭 𝐅𝐫𝐞𝐞 𝐏𝐃𝐅 𝐁𝐫𝐨𝐜𝐡𝐮𝐫𝐞: https://lnkd.in/gbX3HEV3 Once the clot is located, the #surgeon delicately extracts it using specialized tools, taking care not to cause further damage to the surrounding brain tissue. In some cases, a catheter may be used to suction the clot out of the brain, particularly if it is located in a deep or inaccessible area. After the clot has been removed, the neurosurgeon will carefully inspect the area to ensure that no additional #bleeding or damage has occurred. Once satisfied, the skull bone is replaced, and the incision is closed. In addition to surgical intervention, medications may also be administered to help dissolve the blood clot and prevent further clot formation. These medications, such as anticoagulants or antiplatelet #drugs, work to thin the blood and improve circulation, reducing the risk of additional clots forming. Recovery from a blood clot in the brain can vary depending on the severity of the injury and the individual's overall health. Some patients may experience lingering symptoms such as headaches, dizziness, or cognitive difficulties, which may require ongoing rehabilitation and therapy. Overall, the successful removal of a blood clot from the brain requires a multidisciplinary approach involving neurosurgery, imaging, and medical management. Timely intervention is crucial in minimizing the risk of complications and optimizing outcomes for patients with brain concussions and associated blood clots. #Bloodclot #clot #brain #future #medical #innovation
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Discover the power of cardiac MRI with Dr. Pooja Sinha! Learn how this advanced imaging technique offers a 3D view of the heart and its surroundings, aiding both children with heart disease and adults born with congenital conditions. Join us as we explore how cardiac MRI transforms diagnosis and treatment for healthier hearts. #RainbowChildrensHeartInstitute #HeartSurgery #cardiologist #PediatricCardiology #HeartHealth #PatientTestimonial #LittleChampions #Kenya #Cardiology #criticalsurgery #cardiacmri
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Elon musk's Neuralink chip implant Neuralink has been at the forefront of developing advanced brain-computer interface (BCI) technologies. The centerpiece of their work is the Neuralink chip, a tiny implantable device designed to be placed directly on the surface of the brain. This revolutionary device aims to create a seamless, high-bandwidth connection between the human mind and digital systems. The key objectives of the Neuralink chip include restoring sensory and motor functions for individuals with disabilities or neurological conditions, as well as potentially enhancing human cognitive abilities by expanding the boundaries of what the brain can do. The Neuralink chip works by directly interfacing with the brain's neural activity. It is equipped with an array of ultra-fine electrodes that can record and stimulate neural signals with a high degree of precision. Once implanted, the chip can detect and interpret the brain's electrical impulses, allowing it to translate these signals into commands that can control digital devices and interfaces. Through this direct neural link, the Neuralink chip has demonstrated the ability to control computer cursors and robotic limbs, paving the way for a wide range of potential applications. #Neuralink #BrainComputerInterface #Technology #NeuralSignals #MedicalApplications #Healthcare #FutureofTechnology
Co-founder at TEN(Total Emergency Network) / Chief Business Officer and BNI member / Ambulance & Expert Care in 15 Minutes! / Transforming Healthcare with 6000 Successful Ambulance Trips and Counting!
Elon musk's Neuralink chip implant Radiations in Cath Lab: Understanding the Impact In the catheterization laboratory (cath lab), fluoroscopy is extensively used, a technique employing x-rays to capture real-time moving images of the heart and blood vessels. However, it's crucial to recognize that x-rays belong to the category of ionizing radiation, which can pose significant risks to living tissue. Effects of Radiations: 1️⃣ Thyroid Disease: Prolonged exposure to radiation can increase the risk of thyroid disorders. 2️⃣ Brain Tumor: Ionizing radiation exposure has been linked to the development of brain tumors over time. 3️⃣ Cardiovascular Changes: Radiation exposure can induce changes in cardiovascular health, affecting heart function. 4️⃣ Carcinogenic Potential:Ionizing radiation is considered a carcinogen, with long-term exposure potentially leading to various cancers. 5️⃣ Damage to Vital Organs: Organs within the radiation field are susceptible to damage, impacting their normal function. 6️⃣ Damage to Reproductive Organs: Radiation exposure can harm reproductive organs, affecting fertility and overall reproductive health. Awareness of these potential effects is crucial for healthcare professionals and patients undergoing procedures involving radiation in the cath lab. Strict safety protocols, appropriate shielding, and minimizing unnecessary exposure are vital to mitigate these risks effectively. 😱 Need emergency medical assistance ? 🚑 Don't panic, we're here! ☎️ Dial: +91 73311 05533 🚨 For immediate and expert ambulance services in just 10 mins! Join us: https://lnkd.in/gSWjGBmG 🤝 24/7 safety, call now! ♥️ Your safety is our priority. #RadiationSafety #CathLab #HealthAwareness
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Can Common Data Elements Unlock Research Potential in Traumatic Brain Injuries Analysis? Neuroimaging is crucial for analyzing traumatic brain injuries (TBI), but differences in terminology and protocols limit research and clinical use. A new initiative aims to create the first common data elements (CDEs) for TBI neuroimaging, standardizing techniques while remaining flexible for evolving imaging. The CDEs provide defined terms for reporting structural lesions detectable by MRI and CT, and recommend protocols for identifying often-missed injuries. This framework enables the analysis of various lesion types over recovery periods. Standardizing quantification and classification could link TBI imaging findings to patient function for prognosis and treatment planning. It may also help understand the variability in mild injuries with normal initial scans. The effort to unify TBI imaging protocols is crucial to fill knowledge gaps, requiring collaboration across specialties. Radiologists and imaging scientists can provide practical insights into clinical implementation. The need for standardization in TBI assessment has been evident. As research moves beyond acute structural changes to subtler disruptions, inconsistencies in imaging have impeded progress. The proposed TBI-specific CDEs offer an infrastructure for integrating these evolving modalities widely. Standardized image analysis reporting could reveal clearer connections between diffuse microstructural injuries and patient functioning. https://lnkd.in/dYTAJEm6 #Radiology #AIinRadiology #EmpoweringRadiology #AIinMedicine #MedicalImaging #RadiologyRevolution #RadiologyImaging #PatientCenteredAI #BrainImaging
Common Data Elements in Radiologic Imaging of Traumatic Brain Injury
sciencedirect.com
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This new review highlights the importance of durable lesion creation through pulmonary vein isolation and the latest techniques for ensuring long-term success after atrial fibrillation ablation.
📢Review Sharing-Vol. 25 No. 2 💕 Title: Understanding Lesion Creation Biophysics and Improved Lesion Assessment during Radiofrequency Catheter Ablation. The Perfect Combination to Achieve Durable Lesions in Atrial Fibrillation Ablation 🤵 Authors: Ely Gracia†, Andres F. Miranda-Arboleda,†, Carolina Hoyos, Carlos D. Matos, Jose Osorio, Jorge E. Romero, MD, FACC,FHRS, Paul C. Zei,* 🔔 Full Text: https://lnkd.in/eHK663zG 🔑 Keywords: atrial fibrillation; pulmonary vein isolation; biophysics; lesion assessment; impedance; contact force; ablation index 😎Welcome to your reading! #CardiacRhabdomyoma #HeartTumor #PediatricCardiology #CardiacHealth #RareDisease #CardiacTumors #MedicalResearch #HealthcareAwareness #HeartHealth #PediatricHealth #Cardiology #HeartDisease #TumorResearch #MedicalScience #CardiovascularHealth
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