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Titlebook: Brain and Human Body Modeling; Computational Human Sergey Makarov,Marc Horner,Gregory Noetscher Book‘‘‘‘‘‘‘‘ 2019 The Editor(s) (if applic

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發(fā)表于 2025-3-21 19:02:52 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Brain and Human Body Modeling
期刊簡稱Computational Human
影響因子2023Sergey Makarov,Marc Horner,Gregory Noetscher
視頻videohttp://file.papertrans.cn/191/190263/190263.mp4
發(fā)行地址Describes construction and application of computational human models including anatomically detailed and subject specific models.Explains new practices in computational human modeling for neuroelectro
圖書封面Titlebook: Brain and Human Body Modeling; Computational Human  Sergey Makarov,Marc Horner,Gregory Noetscher Book‘‘‘‘‘‘‘‘ 2019 The Editor(s) (if applic
影響因子.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. 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..Describes construction and application ofcomputational human models including anatomically detailed and subjectspecific models;.Explains new practices in computationalhuman modeling for neuroelectromagnetics, electromagnetic safety, andexposure evaluations;.Includes a survey of modern applicationsfor which computational human models are critical;.Describes cellular-level interactionsbetween the human body and electromagnetic fields.. .
Pindex Book‘‘‘‘‘‘‘‘ 2019
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Ton J. Cleophas,Aeilko H. Zwindermanifferent values of the TMS intensity measured in standard motor threshold (SMT) units. Along with the numerical simulations, we use a simple analytical estimation model; both approaches confirm and augment each other. Our simulation/analytical results estimate the maximum peak values of the electric
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Ton J. Cleophas,Aeilko H. Zwindermanould probably combine the best of transcutaneous electric nerve stimulation, or TENS, and transcranial magnetic stimulation, or TMS. In the first case, it is a continuous and flexible operation, while in the second case, it is painless, noncontact, and provides deep field penetration..This study is
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Ton J. Cleophas,Aeilko H. Zwindermanr array layouts, and in fact the FA estimate indicates a different order of array performance than predicted from the more conventional estimate of field intensity. Furthermore, we found that resection of the tumor tends to nullify field distribution differences between array layouts while also sign
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Typology of Medical Data (51 Patients)ied to test scenarios, with and without pre-processing of the EIT measurement frame, are summarised. The classifier returned detection accuracies >90% with signal-to-noise ratios of ≥60?dB; was independent of bleed location, capable of detecting bleeds as small as 10?ml; and was unaffected by slight
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Ton J. Cleophas,Aeilko H. Zwindermancan be fulfilled with anatomically correct surface-based human models and EM solvers based on unstructured meshes. Here, we report . our workflow used to generate the surface meshes of a head and torso model from the segmented AustinMan dataset, . head and torso model mesh optimization for three-dim
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