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Titlebook: Biomechanics of the Brain; Karol Miller Book 2019Latest edition Springer Nature Switzerland AG 2019 Brain biomechanics.brain deformations.

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期刊全称Biomechanics of the Brain
影响因子2023Karol Miller
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发行地址Updated comprehensive resource in the field of brain biomechanics.Edited by leading authority in the field, with contributions from scientists at major institutions.A must-have for students and resear
学科分类Biological and Medical Physics, Biomedical Engineering
图书封面Titlebook: Biomechanics of the Brain;  Karol Miller Book 2019Latest edition Springer Nature Switzerland AG 2019 Brain biomechanics.brain deformations.
影响因子.This new edition presents an authoritative account of the current state of brain biomechanics research for engineers, scientists and medical professionals. Since the first edition in 2011, this topic has unquestionably entered into the mainstream of biomechanical research. The book brings together leading scientists in the diverse fields of anatomy, neuroimaging, image-guided neurosurgery, brain injury, solid and fluid mechanics, mathematical modelling and computer simulation to paint an inclusive picture of the rapidly evolving field..Covering topics from brain anatomy and imaging to sophisticated methods of modeling brain injury and neurosurgery (including the most recent applications of biomechanics to treat epilepsy), to the cutting edge methods in analyzing cerebrospinal fluid and blood flow, this book is the comprehensive reference in the field. Experienced researchers as well as students will find this book useful..
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Erfolge der aktiven Rehabilitation,e real-time computation (through parallel processing/multithreading) on commodity hardware. We provide examples of verification of the discussed finite element algorithms against the reference solutions obtained using the well-established non-linear static finite element procedures. We discuss time-
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Erfolge der aktiven Rehabilitation,o are not experts in computational mechanics to build patient-specific computational biomechanics models of the brain and other body organs), (2) ensuring the desired accuracy of Gaussian spatial integration for non-polynomial shape functions through adaptive integration schemes, and (3) determining
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https://doi.org/10.1007/978-3-642-73255-3 surgical workflow have limited the actual use of biomechanical model-based registration methods during surgery. This chapter first summarises the key steps and criteria to use computational modelling in the operating theatre. Then, a method relying on finite element modelling and vessels-based cons
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Human Brain Anatomy in 3D,d Brodmann’s areas, are described and illustrated. The vascular neuroanatomy covers the arterial system (the anterior and posterior circulations) and the venous systems (the dural sinuses and the cerebral superficial and deep veins). The connectional neuroanatomy contains and illustrates the cerebra
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Dynamics of Cerebrospinal Fluid: From Theoretical Models to Clinical Applications,oint of clinical diagnosis and modelling, three techniques are particularly useful: infusion test, overnight ICP monitoring, and non-invasive detection of CSF movement using phase-coded MRI. These techniques are described and discussed.
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