首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Somatosensory evoked potentials to a threshold air-puff can predict stimulus detection in human subjects.
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Somatosensory evoked potentials to a threshold air-puff can predict stimulus detection in human subjects.

机译:体感诱发电位达到阈值时,可以预测人类受试者的刺激检测。

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摘要

Somatosensory evoked potentials (SEPs) and reaction time (RT) were studied following a threshold intensity air-puff stimulation of the skin in nine subjects. We delivered brief air-puffs, at the threshold intensity of about 50% detection probability, to the volar surface of the right hand at the base of the index finger. The SEPs were averaged separately for detected and undetected stimuli. Prior to the SEP data collection, RTs to the same intensity threshold stimulus were measured. P300 SEP late component was recorded in response to detected stimuli and was not to undetected stimuli. However, in one subject, P300 was associated with undetected stimuli, suggesting errors in the psychophysical task. The peak latency of P300 was 316+/-29 ms (mean+/-SD) and earlier than the average RT (390+/-43 ms). These results demonstrate that SEPs can correctly predict perception of the threshold air-puff stimulus.
机译:在九名受试者中,在阈值强度的气喘刺激皮肤后,研究了体感诱发电位(SEPs)和反应时间(RT)。我们以大约50%的检测概率的阈值强度向食指底部右手的掌侧表面吐出了短暂的气泡。将SEP分别平均为检测到的和未检测到的刺激。在SEP数据收集之前,测量到相同强度阈值刺激的RT。记录P300 SEP晚期成分是对检测到的刺激做出反应,而不是未检测到的刺激。但是,在一个受试者中,P300与未检测到的刺激有关,提示心理生理任务有误。 P300的峰值潜伏时间为316 +/- 29 ms(平均+/- SD),并且早于平均RT(390 +/- 43 ms)。这些结果表明,SEPs可以正确预测阈值气喘刺激的感知。

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