首页> 美国卫生研究院文献>Journal of Neurophysiology >Neurophysiology of Tactile Perception: A Tribute to Steven Hsiao: Peripheral vs. central determinants of vibrotactile adaptation
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Neurophysiology of Tactile Perception: A Tribute to Steven Hsiao: Peripheral vs. central determinants of vibrotactile adaptation

机译:触觉知觉的神经生理学:向萧敬腾致敬:触觉适应性的外周决定因素与中央决定因素

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摘要

Long-lasting mechanical vibrations applied to the skin induce a reversible decrease in the perception of vibration at the stimulated skin site. This phenomenon of vibrotactile adaptation has been studied extensively, yet there is still no clear consensus on the mechanisms leading to vibrotactile adaptation. In particular, the respective contributions of 1) changes affecting mechanical skin impedance, 2) peripheral processes, and 3) central processes are largely unknown. Here we used direct electrical stimulation of nerve fibers to bypass mechanical transduction processes and thereby explore the possible contribution of central vs. peripheral processes to vibrotactile adaptation. Three experiments were conducted. In the first, adaptation was induced with mechanical vibration of the fingertip (51- or 251-Hz vibration delivered for 8 min, at 40× detection threshold). In the second, we attempted to induce adaptation with transcutaneous electrical stimulation of the median nerve (51- or 251-Hz constant-current pulses delivered for 8 min, at 1.5× detection threshold). Vibrotactile detection thresholds were measured before and after adaptation. Mechanical stimulation induced a clear increase of vibrotactile detection thresholds. In contrast, thresholds were unaffected by electrical stimulation. In the third experiment, we assessed the effect of mechanical adaptation on the detection thresholds to transcutaneous electrical nerve stimuli, measured before and after adaptation. Electrical detection thresholds were unaffected by the mechanical adaptation. Taken together, our results suggest that vibrotactile adaptation is predominantly the consequence of peripheral mechanoreceptor processes and/or changes in biomechanical properties of the skin.
机译:施加在皮肤上的持久的机械振动会导致受刺激的皮肤部位的振动感觉发生可逆的下降。这种对触觉适应的现象已经得到了广泛的研究,但是对于导致触觉适应的机制仍然没有明确的共识。特别地,在很大程度上未知1)影响机械皮肤阻抗的变化,2)外围过程和3)中心过程的各自贡献。在这里,我们使用神经纤维的直接电刺激绕过机械转导过程,从而探索中央过程与周围过程对触觉适应的可能贡献。进行了三个实验。首先,通过指尖的机械振动(在40倍检测阈值下,传递51或251 Hz的振动8分钟,引起自适应)来进行适应。在第二个实验中,我们尝试通过正中神经的经皮电刺激(以1.5倍检测阈值递送8分钟(51或251 Hz恒定电流脉冲)来诱导适应。在适应之前和之后测量触觉检测阈值。机械刺激导致触觉检测阈值明显增加。相反,阈值不受电刺激的影响。在第三个实验中,我们评估了机械适应对经皮适应前后皮电神经刺激检测阈值的影响。电气检测阈值不受机械适应性的影响。两者合计,我们的结果表明,触觉适应主要是外围机械感受器过程和/或皮肤生物力学性质变化的结果。

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