Central Integration of Pain, INSERM, U1028, Lyon Neuroscience Research Center, Lyon, F-69000, France; University Lyon 1, Villeurbanne, F-69000, France.
Hum Brain Mapp. 2013 Oct;34(10):2655-68. doi: 10.1002/hbm.22097. Epub 2012 Jun 15.
Intracortical evoked potentials to nonnoxious Aβ (electrical) and noxious Aδ (laser) stimuli within the human primary somatosensory (S1) and motor (M1) areas were recorded from 71 electrode sites in 9 epileptic patients. All cortical sites responding to specific noxious inputs also responded to nonnoxious stimuli, while the reverse was not always true. Evoked responses in S1 area 3b were systematic for nonnoxious inputs, but seen in only half of cases after nociceptive stimulation. Nociceptive responses were systematically recorded when electrode tracks reached the crown of the postcentral gyrus, consistent with an origin in somatosensory areas 1-2. Sites in the precentral cortex also exhibited noxious and nonnoxious responses with phase reversals indicating a local origin in area 4 (M1). We conclude that a representation of thermal nociceptive information does exist in human S1, although to a much lesser extent than the nonnociceptive one. Notably, area 3b, which responds massively to nonnoxious Aβ activation was less involved in the processing of noxious heat. S1 and M1 responses to noxious heat occurred at latencies comparable to those observed in the supra-sylvian opercular region of the same patients, suggesting a parallel, rather than hierarchical, processing of noxious inputs in S1, M1 and opercular cortex. This study provides the first direct evidence for a spinothalamic related input to the motor cortex in humans.
在 9 名癫痫患者的 71 个电极位置记录了来自人类初级体感(S1)和运动(M1)区域的非伤害性 Aβ(电)和伤害性 Aδ(激光)刺激的皮层内诱发电位。所有对特定伤害性输入有反应的皮层部位也对非伤害性刺激有反应,而反之则不一定。S1 区 3b 的诱发电应对于非伤害性输入是系统的,但在接受伤害性刺激后只有一半的情况下可见。当电极轨迹到达中央后回的顶部时,可系统地记录伤害性反应,这与起源于体感区 1-2 一致。中央前回的部位也表现出伤害性和非伤害性反应,相位反转表明起源于第 4 区(M1)。我们的结论是,尽管在人类 S1 中存在热伤害性信息的表示,但程度要小得多。值得注意的是,对非伤害性 Aβ 激活有强烈反应的 3b 区在处理伤害性热刺激方面的参与程度较低。S1 和 M1 对伤害性热刺激的反应潜伏期与同一患者上外侧颞叶区观察到的潜伏期相当,这表明在 S1、M1 和外侧颞叶皮质中,伤害性输入的处理是平行的,而不是分层的。这项研究为人类运动皮层存在与脊髓丘脑相关的输入提供了直接证据。