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激光和接触热诱发电位的强度匹配比较。

An intensity matched comparison of laser- and contact heat evoked potentials.

机构信息

International Collaboration on Repair Discoveries (ICORD), University of British Columbia, Vancouver, BC, Canada.

Spinal Cord Injury Center, University Hospital Balgrist, University of Zurich, Zurich, Switzerland.

出版信息

Sci Rep. 2021 Mar 25;11(1):6861. doi: 10.1038/s41598-021-85819-w.

Abstract

Previous studies comparing laser (LEPs) and contact heat evoked potentials (CHEPs) consistently reported higher amplitudes following laser compared to contact heat stimulation. However, none of the studies matched the perceived pain intensity, questioning if the observed difference in amplitude is due to biophysical differences between the two methods or a mismatch in stimulation intensity. The aims of the current study were twofold: (1) to directly compare the brain potentials induced by intensity matched laser and contact heat stimulation and (2) investigate how capsaicin-induced secondary hyperalgesia modulates LEPs and CHEPs. Twenty-one healthy subjects were recruited and measured at four experimental sessions: (1) CHEPs + sham, (2) LEPs + sham, (3) CHEPs + capsaicin, and (4) LEPs + capsaicin. Baseline (sham) LEPs latency was significantly shorter and amplitude significantly larger compared to CHEPs, even when matched for perceived pain. Neither CHEPs nor LEPs was sensitive enough to detect secondary hyperalgesia. These differences provide evidence that a faster heating rate results in an earlier and more synchronized LEPs than CHEPs. To our knowledge, this was the first study to match perceived intensity of contact heat and laser stimulations, revealing distinct advantages associated with the acquisition of LEPs.

摘要

先前的研究比较了激光(LEPs)和接触热诱发电位(CHEPs),一致报告称激光刺激后的振幅高于接触热刺激。然而,这些研究都没有匹配感知到的疼痛强度,这使得人们质疑振幅的差异是否是由于两种方法的生物物理差异,还是由于刺激强度不匹配所致。本研究的目的有两个:(1)直接比较强度匹配的激光和接触热刺激引起的脑电位,(2)研究辣椒素诱导的二次痛觉过敏如何调节 LEPs 和 CHEPs。21 名健康受试者在四个实验中进行了招募和测量:(1) CHEPs+假刺激,(2) LEPs+假刺激,(3) CHEPs+辣椒素,和(4) LEPs+辣椒素。即使匹配了感知到的疼痛强度,基线(假刺激)LEPs 的潜伏期明显更短,振幅也明显更大。CHEPs 和 LEPs 都不够敏感,无法检测到二次痛觉过敏。这些差异提供了证据,表明更快的加热速率会导致 LEPs 比 CHEPs 更早且更同步。据我们所知,这是第一项匹配接触热和激光刺激感知强度的研究,揭示了与 LEPs 采集相关的明显优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/933b/7994633/f02dc0068563/41598_2021_85819_Fig1_HTML.jpg

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