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平均诱发电位的在线统计检测:在听觉诱发电位测听法(ERA)中的应用。

On-line statistical detection of average evoked potentials: application to evoked response audiometry (ERA).

作者信息

Wicke J D, Goff W R, Wallace J D, Allison T

出版信息

Electroencephalogr Clin Neurophysiol. 1978 Mar;44(3):328-43. doi: 10.1016/0013-4694(78)90308-5.

Abstract

An objective method of EP detection in averaged EEG epochs is described which is based on the statistical properties of the averaged EEG in the absence of time-locked EP activity. The statistical properties of the subject's averaged background EEG are summarized by making a set of comparisons between two consecutive EEG epochs immediately preceding each stimulus presentation. After every stimulus presentation, a second set of comparisons is made between the post-stimulus EEG epoch and the immediately preceding pre-stimulus EEG epoch. These two sets of comparisons are then examined to determine whether the latter differ significantly from the former. The technique has been programmed for on-line use on a 12-bit minicomputer, validated on cooperative adult subjects and used for ERA threshold determinations in young children. Using response detection criteria yielding an empirically determined false positive error rate of between 1 and 4%, threshold estimates averaged about 10 dB higher than psychophysical thresholds. The efficiency with which such ERA thresholds may be obtained with this method is substantially greater than that of conventional ERA procedures employing subjective evaluation of averages. Further, the technique allows variation of detection criteria to suit non-audiometric needs and empirical determination of the false-positive error rate under any set of conditions.

摘要

本文描述了一种在平均脑电图片段中检测诱发电位(EP)的客观方法,该方法基于在没有与时间锁定的EP活动情况下平均脑电图的统计特性。通过在每次刺激呈现之前紧邻的两个连续脑电图片段之间进行一组比较,总结受试者平均背景脑电图的统计特性。每次刺激呈现后,在刺激后脑电图片段与紧邻的刺激前脑电图片段之间进行第二组比较。然后检查这两组比较,以确定后者是否与前者有显著差异。该技术已被编程用于12位小型计算机上的在线使用,在合作的成年受试者身上得到验证,并用于幼儿的听性脑干反应(ERA)阈值测定。使用产生经验确定的假阳性错误率在1%至4%之间的反应检测标准,阈值估计平均比心理物理学阈值高约10分贝。用这种方法获得此类ERA阈值的效率大大高于采用平均值主观评估的传统ERA程序。此外,该技术允许改变检测标准以适应非听力测试需求,并在任何条件下对假阳性错误率进行经验确定。

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