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![]() Marc is also an Associate Editor of the ASME Journal of Verification, Validation, and Uncertainty Quantification. Marc is Vice Chair of the ASME V&V40 Sub-Committee - which is establishing V&V best practices for the medical device industry, and the ASME V&V Standards Committee - who oversee the creation of best practices and general guidance on V&V for CM&S. HUMAN BRAIN MAPPING BEST PRACTICES MRI WHITE PAPERS PROFESSIONALMarc began by providing support and professional services for biomedical and pharmaceutical industry clients before transitioning to a healthcare business and technology development role. in Chemical Engineering from Northwestern University in 2001. Marc joined ANSYS after earning his Ph.D. Martinos Center for Biomedical Imaging at Massachusetts General Hospital, conducting investigative studies in non-invasive brain stimulation technologies that utilize many of his computational human phantoms.Marc Horner is the technical lead for healthcare applications at ANSYS, Inc. Makarov is also a member of the Research Staff at the Athinoula A. Makarov founded NEVA Electromagnetics, LLC, serving customers in need of multi-tissue virtual human models generated from biomedical image datasets for electromagnetic and mechanical simulation studies, body-worn antenna designs, and biomedical sensor designs for many applications. He has received numerous departmental and institute-wide awards for his teaching, advising, and service and is a Senior Member of the IEEE, participating in or chairing committees related to electromagnetic safety and education. Makarov has published about 150 conference and journal papers, three books, and he holds active 6 patents with four other pending. His formal educational background is in applied mathematics and electromagnetics but since moving to WPI in 1998, his research field has been shifted to analysis and design with virtual human models including image segmentation, surface extraction, and CAD model generation. HUMAN BRAIN MAPPING BEST PRACTICES MRI WHITE PAPERS FULLSergey Makarov is a full professor of Electrical and Computer Engineering at Worcester Polytechnic Institute, having taught a wide variety of graduate and undergraduate classes and established a very active record of academic and research advising. Describes cellular-level interactions between the human body and electromagnetic fields.Includes a survey of modern applications for which computational human models are critical.Explains new practices in computational human modeling for neuroelectromagnetics, electromagnetic safety, and exposure evaluations.Describes construction and application of computational human models including anatomically detailed and subject specific models.Special consideration is also given to the use of human modeling to the computational assessment of relevant regulatory and safety requirements. Readers working on applications that may expose human subjects to electromagnetic radiation will benefit from this book’s coverage of the latest developments in computational modelling and human phantom development to assess a given technology’s safety and efficacy in a timely manner. This open access book describes modern applications of computational human modeling with specific emphasis in the areas of neurology and neuroelectromagnetics, depression and cancer treatments, radio-frequency studies and wireless communications.
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