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Titlebook: Atlas of Brain Mapping; Topographic Mapping Konrad Maurer,Thomas Dierks Book 1991 Springer-Verlag Berlin Heidelberg 1991 Brain Mapping.EEG

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發(fā)表于 2025-3-21 17:03:02 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Atlas of Brain Mapping
期刊簡稱Topographic Mapping
影響因子2023Konrad Maurer,Thomas Dierks
視頻videohttp://file.papertrans.cn/165/164089/164089.mp4
圖書封面Titlebook: Atlas of Brain Mapping; Topographic Mapping  Konrad Maurer,Thomas Dierks Book 1991 Springer-Verlag Berlin Heidelberg 1991 Brain Mapping.EEG
影響因子From its discovery in 1929 by Hans Berger until the late 1960s, when sensory visual and auditory evoked potentials were dis- covered and became popular, the EEG was the most important method of neurophysiological examination. W-ith the advent of computer technology in the 1980s, it became possible to plot the potential fields of the EEG onto models of the scalp. This plot- ting of information as neuroimages followed the structural and functional techniques of Cf, MRI, PET and SPECf. The success of this method, which began in the early 1980s, has led to the brain mapping of EEGs and EPs being increasingly used for di- agnosistic purposes in neurology, psychiatry and psychopharma- cology. The pioneers of this method believed in it and were commit- ted to its success. However, many traditionalists felt that it gave no new information and so regarded the method with scepticism. Some found both the coloured maps and the mapping technique misleading, which led to unnecessary conflict between mappers and their chromophobic oponents. Emotions have run so high that some professional bodies have justifiably adopted guidelines and warned of the misuse of the method.
Pindex Book 1991
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History, for measurements of electrical activity of the brain. The first step torward mapping was made with simultaneous recording from several points on the skull and Adrian’s discovery of the occipitoparietally centered alpha focus and the travelling wave character of the alpha rhythm (Adrian and Yamagiwa
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Definition and Terminology,ted number of electrodes on the head and by subsequent interpolation methods. Data are generally recorded from 16–64 electrodes on the head, and an interpolation algorithm is used to obtain several thousand points. In contrast to structural imaging methods such as CT, maps of EEG and EP are based on
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Practical Application: Findings in Normal Subjects,n. A difference in the case of mapping as compared to conventional EEG/EP recordings is the fact that data of both these domains are transferred to the spatial domain by measuring the amount of activity over a restricted number of electrode sites and using interpolative methods for interelectrode po
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Optimizing Access for SQL Server,s often as needed, and has extremely short analysis times (in the range of milliseconds). Electroencephalographic (EEG) and evoked potential (EP) mapping do not portray anatomic structures but the constantly varying spatial distribution of the electrical fields generated by the brain.
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