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Titlebook: Central Nervous System Monitoring in Anesthesia and Intensive Care; J. Schulte am Esch,E. Kochs Book 1994 Springer-Verlag Berlin Heidelber

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書目名稱Central Nervous System Monitoring in Anesthesia and Intensive Care
編輯J. Schulte am Esch,E. Kochs
視頻videohttp://file.papertrans.cn/224/223196/223196.mp4
圖書封面Titlebook: Central Nervous System Monitoring in Anesthesia and Intensive Care;  J. Schulte am Esch,E. Kochs Book 1994 Springer-Verlag Berlin Heidelber
描述Research in electrophysiologic monitoring in anesthesia and intensive care has focussed mostly on questions pertinent for patient care: First how to quantitate drug effects on brain electrical activity and the degree of anesthetic-induced suppression of the central nervous system. Second, how to monitor functional impairment following cerebral ischemia and hypoxia. And third, how to differ- entiate between drug-induced effects on the central nervous system and deleteri- ous events related to reductions in cerebral blood flow and/or oxygen delivery. Even though progress has been achieved over the last 10 years in this field and fascinating new techniques have been developed, it is still not clear which monitor parameter will provide adequate information on the depth of anes- thesia and the analgesic level. Because the central nervous system has been one of the main research areas in our department over the last 10 years, we organized a workshop to summarize the latest developments in central nervous system monitoring. This book comprises the topics of this workshop and is intended to provide insight into the current status of central nervous system monitoring, elucidating possible i
出版日期Book 1994
關(guān)鍵詞Electroencephalography; Evoked responses; Monitoring; auditory; care; central nervous system; doppler sono
版次1
doihttps://doi.org/10.1007/978-3-642-78441-5
isbn_softcover978-3-642-78443-9
isbn_ebook978-3-642-78441-5
copyrightSpringer-Verlag Berlin Heidelberg 1994
The information of publication is updating

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s in our department over the last 10 years, we organized a workshop to summarize the latest developments in central nervous system monitoring. This book comprises the topics of this workshop and is intended to provide insight into the current status of central nervous system monitoring, elucidating possible i978-3-642-78443-9978-3-642-78441-5
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“Paradoxical Arousal” During Isoflurane/Nitrous Oxide Anesthesia: Quantitative Topographical EEG Anar “paradoxical” arousal phenomena [1]. However, brain electrical activity is modulated not only by drug effects but also by changes in respiratory and hemodynamic parameters, body temperature, and exogenous stimuli. Previous studies have shown that EEG high voltage slow waves may also occur spontane
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Central Nervous System Monitoring; Reduction of Information Content of Quantitative Electroencephaloof real-time, on-line recording and display of the frequency-analyzed signals from 17 electrode positions providing the base for true on-line monitoring with a high time resolution of 4 s (Dimpfel 1993).
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The 40-Hz Auditory Steady State Response for Monitoring Level of Consciousness: Methodological Consity to open the eyes on command after termination of the anesthetic seemed reliably associated with a clear, stepwise increase in the amplitude of the 40-Hz ASSR, which until then had remained markedly reduced [15,25]. This suggests that the profound attenuation of the 40-Hz ASSR by enflurane-N.0 or
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Motor-Evoked Potentialssearch Society among physicians performing intraoperative SSEP monitoring during spinal surgery revealed that five out of 27 major neurological complications (17%) that occurred with monitoring in place were not diagnosed by changes in SSEP [8]. Even if technical errors or lack of experience are tak
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Central Nervous System Monitoring in Anesthesia and Intensive Care
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Central Nervous System Monitoring in Anesthesia and Intensive Care978-3-642-78441-5
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Malignit?tshinweise im Dermatoskopr “paradoxical” arousal phenomena [1]. However, brain electrical activity is modulated not only by drug effects but also by changes in respiratory and hemodynamic parameters, body temperature, and exogenous stimuli. Previous studies have shown that EEG high voltage slow waves may also occur spontane
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