Recorded Webinar: Physiological Realism in Medical Simulation https://lnkd.in/gBHD-rNC #ClinicalSimulation
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Upcoming Webinar: Physiological Realism in Medical Simulation | Nov. 6th at 10AM PST Register now for FREE: https://lnkd.in/gM5iYUNc #HealthcareSimulation #ClinicalSimulation #VirtualReality #MedicalSimulation
Physiological Realism in Medical Simulation | HealthySimulation.com
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Join Us TOMORROW: Physiological Realism in Medical Simulation | Nov. 6th at 10AM PST Register now for FREE: https://lnkd.in/gM5iYUNc #HealthcareSimulation #ClinicalSimulation #VirtualReality #MedicalSimulation
Physiological Realism in Medical Simulation | HealthySimulation.com
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Upcoming Webinar: Physiological Realism in Medical Simulation | Nov. 6th at 10AM PST Register now for FREE: https://lnkd.in/gM5iYUNc #HealthcareSimulation #ClinicalSimulation #VirtualReality #MedicalSimulation
Physiological Realism in Medical Simulation | HealthySimulation.com
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Upcoming Webinar: Physiological Realism in Medical Simulation | Nov. 6th at 10AM PST Register now for FREE: https://lnkd.in/g-Rh-K7E #HealthcareSimulation #ClinicalSimulation #VirtualReality #MedicalSimulation
Physiological Realism in Medical Simulation | HealthySimulation.com
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Upcoming Webinar: Physiological Realism in Medical Simulation | Nov. 6th at 10AM PST Register now for FREE: https://lnkd.in/g-Rh-K7E #HealthcareSimulation #ClinicalSimulation #VirtualReality #MedicalSimulation
Physiological Realism in Medical Simulation | HealthySimulation.com
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Why Anatomy-Based Research Matters Have you ever wondered how doctors develop new treatments or how surgeons improve their techniques? It all starts with anatomy-based research. Anatomy-based research is at the heart of many medical breakthroughs. Here's why it matters: 1. Better understanding of diseases 2. Safer and more effective surgeries 3. Training the next generation of healthcare professionals 4. Development of new drugs and therapies 5. Improved diagnostic tools and methods Anatomy-based research is about more than just understanding how we’re built—it's about improving lives through knowledge. #AnatomyResearch #MedicalScience #DataAnalysis #HealthcareInnovation #ResearchMatters #LifeSciences
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"50% of information in medical textbooks is wrong" - Eddie "What do you think are the implications of that?" - Rick "Incalculable" - Edward Chang, Chair of the Department of Neurological Surgery at UCSF This was from a 2023 conversation between Andrew Huberman and Rick Rubin. Eddie is the furthest thing from a "bro scientist" as much as centralized healthcare would like to protect its own ego. But it should inspire you to take more responsibility for your own health, In a world where as medical advances have come far, we are also some of the most metabolically unhealthy we've ever been. Your workplace will only make meager incentives to make you healthier (just enough to be a more productive employee) Even your doctor will likely do the bare minimum just so they can get onto the next patient in an overburdened medical system. But it doesn't have to be complex with a myriad of surgeries, pharmaceuticals and supplements. Just keep it simple: - Exercise - Eat Clean - Sleep Well - Drink Water - Manage Stress - Daytime Sunlight - Evening Darkness Forget the hyper detailed optimizations. Focus on the basics that your doctor can't fix for you Because apparently half the stuff in their books is wrong anyway.
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Revolutionizing Medical Education: The 3D-Modelled Human Skull for Comprehensive Learning In the ever-evolving field of medical science, where precision and detailed understanding can save lives, the introduction of a 3D-modelled human skull is a game-changer for students and professionals alike. This innovative educational tool is designed to enhance the study, analysis, and understanding of human anatomy, particularly the complex structure of the skull, in an interactive and engaging manner. A Closer Look at the 3D-Modelled Skull The meticulously designed 3D model breaks down the human skull into detailed sections, allowing for an in-depth study of each part. Each section can be separated and reassembled, offering a hands-on experience that traditional textbooks or flat diagrams cannot match. This feature is invaluable for students of medicine, dentistry, and related fields, providing a clear understanding of the skull's anatomy and the spatial relationships between different bones. Innovative Features for Enhanced Learning The 3D model is not just a static representation; it is enhanced with interactive features that bring learning to life. Users can zoom in for a closer look at intricate details, rotate the model to view it from various angles, and even simulate the separation and rejoining of skull sections. This interactivity aids in the comprehension of complex anatomical structures and fosters a more intuitive learning experience. Integration with Advanced Technologies What sets this model apart is its potential for integration with cutting-edge technologies and databases. By connecting the 3D skull model to a database of medical cases, students and professionals can analyze and compare real-life scenarios, such as injuries resulting from accidents. This feature enables the application of theoretical knowledge to practical situations, improving diagnostic and treatment planning skills. A Tool for Diagnosis and Treatment Planning For medical professionals, the model serves as a powerful tool for studying the implications of cranial injuries. By comparing the 3D model with patient scans, physicians can better assess damages, plan surgeries with greater accuracy, and predict patient outcomes. This precision is crucial in the treatment of traumatic brain injuries, where every millimeter can make a difference in patient recovery. Future Prospects: A Leap Towards Advanced Medical Training The development of the 3D-modelled human skull is just the beginning. Its success opens the door for the creation of full-body models, offering a comprehensive tool for studying human anatomy. The integration of augmented reality (AR) and virtual reality (VR) technologies could further revolutionize medical education, allowing for immersive experiences where students can virtually interact with anatomical models in a 3D .
𝐃𝐞𝐭𝐚𝐢𝐥𝐞𝐝 3𝐃 𝐌𝐨𝐝𝐞𝐥 𝐨𝐟 𝐚𝐧 𝐄𝐱𝐩𝐥𝐨𝐝𝐞𝐝 𝐕𝐢𝐞𝐰 𝐨𝐟 𝐭𝐡𝐞 𝐇𝐮𝐦𝐚𝐧 𝐒𝐤𝐮𝐥𝐥 𝐚𝐧𝐝 𝐁𝐫𝐚𝐢𝐧 Visual medicine plays a crucial role in medical education, allowing students and professionals to visualize anatomy, disease processes, surgical procedures, and treatment outcomes. It also aids in patient education, helping individuals better understand their conditions and treatment options. Additionally, visual medicine is used in medical research to present findings and data in a clear and concise manner. Follow AI Echo for more useful content! #visualization #technology #3dmodeling
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𝐃𝐞𝐭𝐚𝐢𝐥𝐞𝐝 3𝐃 𝐌𝐨𝐝𝐞𝐥 𝐨𝐟 𝐚𝐧 𝐄𝐱𝐩𝐥𝐨𝐝𝐞𝐝 𝐕𝐢𝐞𝐰 𝐨𝐟 𝐭𝐡𝐞 𝐇𝐮𝐦𝐚𝐧 𝐒𝐤𝐮𝐥𝐥 𝐚𝐧𝐝 𝐁𝐫𝐚𝐢𝐧 Visual medicine plays a crucial role in medical education, allowing students and professionals to visualize anatomy, disease processes, surgical procedures, and treatment outcomes. It also aids in patient education, helping individuals better understand their conditions and treatment options. Additionally, visual medicine is used in medical research to present findings and data in a clear and concise manner. Follow AI Echo for more useful content! #visualization #technology #3dmodeling
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In this video, we explore the measurement of Femur Length (FL), a key parameter in fetal biometry used to assess fetal growth and estimate gestational age. We cover the correct technique for measuring FL, its significance in tracking skeletal development, and its role in diagnosing growth abnormalities or skeletal dysplasias. This tutorial is designed for sonographers, medical students, obstetricians, and healthcare professionals involved in fetal medicine and ultrasound diagnostics. Second Trimester Ultrasound Course: https://lnkd.in/dEa4bakb #FetalBiometry #FemurLength #Ultrasound #PrenatalCare #Obstetrics #Sonography #FetalDevelopment #MedicalEducation #DiagnosticImaging #Healthcare
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