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Contact heat evoked potentials as a valid means to study nociceptive pathways in human subjects.

机译:接触热诱发电位是研究人类受试者伤害感受途径的有效手段。

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摘要

Contact heat evoked potentials (CHEPs) have been difficult to elicit due to slow temperature rise times. A recently developed heat-foil technology was used to elicit pain and CHEPs. Two groups of subjects were separately stimulated at the left arm with contact heat via one fast-acting (70 degrees C/s) heat-foil thermode. A set of CHEPs was recorded, each at three subjective intensities: warm; slight; and moderate pain. In CHEPs, the 3D topography exhibited four components: T3-T4/N450; Cz/N550; Cz/P750; and Pz/P1000. A vertex topography map was observed in the late Cz/N550-Cz/P750 and parietal topography in the very-late Pz/P1000 components. Consistent statistical values in the peak latencies and amplitudes were noted between consecutive investigations. The correlation between the pain intensity ratings and the major Cz/P750 amplitudes was highly significant in each study. Our validity tests suggested CHEPs to be useful for research and clinical applications in studying human pain activation related to thermal and nociceptive pathways.
机译:由于缓慢的温度上升时间,很难引起接触热诱发电位(CHEP)。最近开发的热箔技术用于引起疼痛和CHEP。两组受试者分别通过一个快速作用(70摄氏度/秒)的热箔热线在左臂受到接触热刺激。记录一组CHEP,每种以三种主观强度进行:温暖;热烈;热烈。轻微;和中度疼痛。在CHEP中,3D地形表现出四个组成部分:T3-T4 / N450; T3-T4 / N450。 Cz / N550; Cz / P750;和Pz / P1000。在后期的Cz / N550-Cz / P750中观察到顶点地形图,在非常晚的Pz / P1000组件中观察到顶壁地形图。连续研究之间注意到峰值潜伏期和振幅的统计值一致。在每项研究中,疼痛强度等级与主要Cz / P750幅度之间的相关性非常显着。我们的有效性测试表明,CHEP在研究与热和伤害性途径有关的人类疼痛激活方面,对于研究和临床应用非常有用。

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