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Titlebook: Clinical Electroencephalography and Topographic Brain Mapping; Technology and Pract Frank H. Duffy,Vasudeva G. Iyer,Walter W. Surwillo Book

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發(fā)表于 2025-3-21 18:22:00 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Clinical Electroencephalography and Topographic Brain Mapping
副標(biāo)題Technology and Pract
編輯Frank H. Duffy,Vasudeva G. Iyer,Walter W. Surwillo
視頻videohttp://file.papertrans.cn/228/227926/227926.mp4
圖書封面Titlebook: Clinical Electroencephalography and Topographic Brain Mapping; Technology and Pract Frank H. Duffy,Vasudeva G. Iyer,Walter W. Surwillo Book
描述Electroencephalography is truly an interdisciplinary endeavor, involving concepts and techniques from a variety of different disciplines. Included are basic physics, neuro- physiology, electrophysiology, electrochemistry, electronics, and electrical engineer- ing, as well as neurology. Given this interesting and diverse mixture of areas, the train- ing of an EEG technician, a neurology resident, or an EEG researcher in the basics of clinical electroencephalography presents an uncommon challenge. In the realm of technology, it is relatively easy to obtain a technically adequate EEG simply by learning to follow a protocol and by correctly setting the various switches on the EEG machine at the right time. But experience has shown that the ability to obtain high-quality EEGs on a routine, day-to-day basis from a wide variety of patients requires understanding and knowledge beyond what is learned by rote. Likewise, knowledge above and beyond what is gained by simple participation in an EEG reading is necessary to correctly and comprehensively interpret the record. Such knowledge comes from an understanding of the basic principles upon which the practice of clinical EEG is founded - prin
出版日期Book 1989
關(guān)鍵詞anatomy; diagnosis; neurology; neurophysiology; neuroscience; physiology
版次1
doihttps://doi.org/10.1007/978-1-4613-8826-5
isbn_softcover978-1-4613-8828-9
isbn_ebook978-1-4613-8826-5
copyrightSpringer-Verlag New York Inc. 1989
The information of publication is updating

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The Differential Amplifier,gin with a consideration of electronic amplifiers in general, and then continue with a discussion and analysis of the differential amplifier. As we will see, the differential amplifier is a specially designed device for recording bioelectric activity, and it is employed universally in EEG machines.
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Filters,at screen out unwanted signals and determine which features of the EEG will appear in the tracing. As we already mentioned in Chapter 1, there are three different types of filters on modern EEG machines: low-frequency filters, high-frequency filters, and 60-Hz “notch” filters. All three types operat
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Recording Electrodes,er our attention is primarily directed to the practical issues involved. It is hardly possible to obtain a satisfactory EEG without having good quality electrodes that have been properly connected to the patient. But what is a good electrode? What constitutes proper electrode application technique?
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Electrical Safety,he fact that the body provides a pathway for the flow of electric current to ground from a nearby discharge of lightning. In other words, there is a risk of being struck by lightning. Since the current levels in a typical lightning stroke can exceed 20,000 A, the danger is indeed a real one.
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