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在清醒人类中,经颅磁刺激和电刺激运动皮层腿部区域所诱发的脊髓下行冲动。

Descending spinal cord volleys evoked by transcranial magnetic and electrical stimulation of the motor cortex leg area in conscious humans.

作者信息

Di Lazzaro V, Oliviero A, Profice P, Meglio M, Cioni B, Tonali P, Rothwell J C

机构信息

Institute of Neurology, Catholic University, L.go A. Gemelli 8, 00168 Rome, Italy.

出版信息

J Physiol. 2001 Dec 15;537(Pt 3):1047-58. doi: 10.1111/j.1469-7793.2001.01047.x.

Abstract
  1. Descending corticospinal volleys evoked after transcranial magnetic or electrical stimulation of the leg area of the motor cortex were recorded from an electrode in the spinal epidural space of six conscious patients who had electrodes implanted for treatment of chronic pain, and from one anaesthetised patient undergoing surgery for a spinal tumour. 2. At threshold, the shortest-latency volley (L1 volley) was evoked by stimulation with an anode 2 cm lateral to the vertex. Anodal stimulation at the vertex also elicited a volley at this latency in two patients, but in the other patients the first volley evoked appeared 1-1.3 ms later (L2 volley), at the same latency as the initial volley evoked by magnetic stimulation. High-intensity stimulation of any type could evoke both the L1 and L2 waves as well as later ones (L3, L4, etc.) that had a periodicity of about 1.5 ms. 3. Voluntary contraction increased the amplitude of the L2 and later volleys, but had no effect on the L1 volley. 4. Intracortical inhibition between pairs of magnetic stimuli resulted in clear suppression of the L4 and later waves. The L2 and L3 waves were unaffected. 5. In the anaesthetised patient the L1 volley occurred 1.7 ms later than the volley produced by transmastoid stimulation of the corticospinal pathways in the brainstem. 6. The L1 volley is likely to be a D wave produced by the direct activation of pyramidal axons in the subcortical white matter; the L2 and later volleys are likely to be I waves produced by the trans-synaptic activation of corticospinal neurones. The implication is that electrical stimulation with an anode at the vertex is more likely to evoke I waves preferentially than stimulation over the hand area. A more secure way to ensure D wave activation of corticospinal fibres from the leg area is to place the anode 2 cm lateral to the vertex.
摘要
  1. 对6名因慢性疼痛植入电极的清醒患者以及1名接受脊髓肿瘤手术的麻醉患者,通过置于脊髓硬膜外间隙的电极记录运动皮层腿部区域经颅磁刺激或电刺激后诱发的下行皮质脊髓冲动。2. 在阈值时,最短潜伏期冲动(L1冲动)由顶点外侧2 cm处的阳极刺激诱发。顶点处的阳极刺激在两名患者中也在该潜伏期诱发了冲动,但在其他患者中,首次诱发的冲动在1 - 1.3毫秒后出现(L2冲动),与磁刺激诱发的初始冲动潜伏期相同。任何类型的高强度刺激都能诱发L1和L2波以及后续波(L3、L4等),其周期约为1.5毫秒。3. 自主收缩增加了L2及后续冲动的幅度,但对L1冲动无影响。4. 成对磁刺激之间的皮质内抑制导致L4及后续波明显抑制。L2和L3波未受影响。5. 在麻醉患者中,L1冲动比脑干中皮质脊髓通路经乳突刺激产生的冲动晚1.7毫秒出现。6. L1冲动可能是由皮质下白质中锥体轴突直接激活产生的D波;L2及后续冲动可能是由皮质脊髓神经元经突触激活产生的I波。这意味着顶点处阳极的电刺激比手部区域的刺激更有可能优先诱发I波。确保腿部区域皮质脊髓纤维D波激活的更可靠方法是将阳极置于顶点外侧2 cm处。

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