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Titlebook: Clinical Applications of Magnetoencephalography; Shozo Tobimatsu,Ryusuke Kakigi Book 2016 Springer Japan 2016 Biomagnetism.Epilepsy.MEG.Ma

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发表于 2025-3-21 19:34:19 | 显示全部楼层 |阅读模式
书目名称Clinical Applications of Magnetoencephalography
编辑Shozo Tobimatsu,Ryusuke Kakigi
视频videohttp://file.papertrans.cn/228/227753/227753.mp4
概述Focuses on clinical applications of magnetoencephalography (MEG).Examines Various diseases such as epilepsy, neurological disorders, and psychiatric disorders.Written by leading experts in the field
图书封面Titlebook: Clinical Applications of Magnetoencephalography;  Shozo Tobimatsu,Ryusuke Kakigi Book 2016 Springer Japan 2016 Biomagnetism.Epilepsy.MEG.Ma
描述.This book presents an overview of the recent advances in clinical applications of magnetoencephalography (MEG). With the expansion of MEG to neuroscience, its clinical applications have also been actively pursued. Featuring contributions from prominent experts in the fields, the book focuses on the current status of the application of MEG, not only to each nervous system but also to various diseases such as epilepsy, neurological disorders, and psychiatric disorders, while also examining the feasibility of using MEG for these diseases. .Clinical Applications of Magnetoencephalography .offers an indispensable resource for neurologists, neurosurgeons, pediatricians, and psychiatrists, as well as researchers in the field of neuroscience.  .
出版日期Book 2016
关键词Biomagnetism; Epilepsy; MEG; Magnetic field; Magnetoencephalography
版次1
doihttps://doi.org/10.1007/978-4-431-55729-6
isbn_softcover978-4-431-56685-4
isbn_ebook978-4-431-55729-6
copyrightSpringer Japan 2016
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https://doi.org/10.1007/978-981-287-035-3ational technique appears to be a black box. To relax such complex matter for general readers, we introduce the principles of MEG computation briefly. This chapter consists of three steps: first, we introduce the basic concept of MEG; next, we describe forward solution; and finally, we address inver
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Penelope Carroll,Karen Witten,Robin Kearns chapter, MEG responses elicited by innocuous and noxious somatic stimuli were reviewed. The development of devices for the selective stimulation of each peripheral receptor (i.e., A-beta mechanoreceptors, A-delta nociceptors, pain-related C nociceptors, and itch-related C nociceptors) enables us to
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Ricardo Fuentes-Nieva,Papa A. Secksory cortex (S1) and area 4 of primary motor cortex located on the posterior and anterior banks of the central sulcus, respectively, are easily detected. The SEFs generated by peripheral mixed nerve stimulation (e.g., median nerve) have been widely used to investigate the physiology of normal somato
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https://doi.org/10.1057/9780230274129he ventral pathway is involved in the processing of shapes and objects as well as color perception, whereas the dorsal pathway is responsible for processing location and motion as well as three-dimensional shape perception. Magnetoencephalography (MEG) achieves very high temporal and spatial resolut
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Anindita Sarkar,Shipra Singh,Ruchi Sachanimultaneously via multiple parallel pathways, each of which performs multiple steps of hierarchical processing. Visual evoked and event-related magnetic fields (VEFs/ERFs) can noninvasively provide rich spatiotemporal information of visual processing in the visual pathways and visual cortex. By mani
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Capacity Control in a Random Environmenten with epilepsy, because it is noninvasive and can be used multiple times for the same patient, thus enabling changes in epileptogenicity to be monitored as a child’s growth..Conventional MEG analysis is not always able to define the epileptogenic area. To this end, the single-dipole analysis tools
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