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Ineffectiveness of tactile gating shows cortical basis of nociceptive signaling in the Thermal Grill Illusion

机译:触觉门控的无效显示了热烧烤幻觉中伤害性信号的皮质基础

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摘要

Painful burning sensations can be elicited by a spatially-alternating pattern of warm and cold stimuli applied on the skin, the so called “Thermal Grill Illusion” (TGI). Here we investigated whether the TGI percept originates spinally or centrally. Since the inhibition of nociceptive input by concomitant non-nociceptive somatosensory input has a strong spinal component, we reasoned that, if the afferent input underlying the TGI originates at spinal level, then the TGI should be inhibited by a concomitant non-nociceptive somatosensory input. Conversely, if TGI is the result of supraspinal processing, then no effect of touch on TGI would be expected. We elicited TGI sensations in a purely thermal condition without tactile input, and found no evidence that tactile input affected the TGI. These results provide further evidence against a spinal mechanism generating the afferent input producing the TGI, and indicate that the peculiar burning sensation of the TGI results from supraspinal interactions between thermoceptive and nociceptive systems.
机译:通过在皮肤上施加冷热刺激的空间交替模式(所谓的“热烧烤幻觉”(TGI)),可以引起痛苦的灼烧感。在这里,我们调查了TGI感知是起源于脊髓还是中央。由于伴随的非伤害性体感输入对伤害性输入的抑制具有强烈的脊柱成分,因此我们认为,如果TGI下方的传入输入起源于脊柱水平,则应以伴随的非伤害性体感输入来抑制TGI。相反,如果TGI是脊柱上处理的结果,那么将不会有触摸对TGI的影响。我们在没有触觉输入的纯热条件下引发了TGI感觉,并且没有发现触觉输入影响TGI的证据。这些结果提供了进一步的证据来证明脊柱机制产生了产生TGI的传入输入,并表明TGI的特殊灼烧感是由热感受和伤害感受系统之间的脊柱上相互作用所引起的。

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