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前臂屈肌传入神经对人类皮质脊髓向拮抗肌输出的抑制作用。

Inhibitory action of forearm flexor muscle afferents on corticospinal outputs to antagonist muscles in humans.

作者信息

Bertolasi L, Priori A, Tinazzi M, Bertasi V, Rothwell J C

机构信息

Dipartimento di Scienze Neurologiche e della Visione, Università degli Studi di Verona, Verona, Italy.

出版信息

J Physiol. 1998 Sep 15;511 ( Pt 3)(Pt 3):947-56. doi: 10.1111/j.1469-7793.1998.947bg.x.

Abstract
  1. To find out whether muscle afferents influence the excitability of corticospinal projections to antagonist muscles, we studied sixteen healthy subjects and one patient with a focal brain lesion. 2. Using transcranial magnetic and electrical brain stimulation we tested the excitability of corticomotoneuronal connections to right forearm muscles at rest after conditioning stimulation of the median nerve at the elbow. Somatosensory potentials evoked by median nerve stimulation were also recorded in each subject. 3. Test stimuli delivered at 13-19 ms after median nerve stimulation significantly inhibited EMG responses elicited in forearm extensor muscles by transcranial magnetic stimulation, but did not inhibit responses to electrical stimulation. In contrast, magnetically and electrically elicited responses in forearm flexor muscles were suppressed to the same extent. 4. The higher the intensity of the test shocks, the smaller was the amount of median nerve-elicited inhibition. Inhibition in extensor muscles was also smaller during tonic wrist extension, or if the induced electrical stimulating current in the brain flowed from posterior to anterior over the motor strip rather than vice versa. Test responses evoked by magnetic transcranial stimulation in the first dorsal interosseous and in brachioradialis muscles were not inhibited after median nerve stimulation at the elbow. Stimulation of digital nerves failed to inhibit motor potentials in extensor muscles. 5. Test stimuli delivered at 15 and 17 ms after radial nerve stimulation significantly inhibited EMG responses elicited in forearm flexor muscles by magnetic transcranial stimulation. 6. In the patient with a focal thalamic lesion, who had dystonic postures and an absent N20 component of the somatosensory-evoked potentials but normal strength, median nerve stimulation failed to inhibit magnetically evoked responses in forearm extensor muscles. 7. We propose that activation of median nerve muscle afferents can suppress the excitability of cortical areas controlling the antagonist forearm extensor muscles acting on the hand. The inhibitory effect occurs at short latency and might assist spinal pathways mediating reciprocal inhibition by contrasting the co-activation of antagonistic pools of corticospinal cells.
摘要
  1. 为了探究肌肉传入神经是否会影响皮质脊髓投射到拮抗肌的兴奋性,我们研究了16名健康受试者和1名患有局灶性脑损伤的患者。2. 我们使用经颅磁刺激和电刺激,在肘部正中神经条件刺激后,测试了静息状态下皮质运动神经元与右前臂肌肉连接的兴奋性。在每个受试者中还记录了正中神经刺激诱发的体感诱发电位。3. 在正中神经刺激后13 - 19毫秒施加的测试刺激显著抑制了经颅磁刺激在前臂伸肌中诱发的肌电图反应,但未抑制对电刺激的反应。相比之下,前臂屈肌中磁刺激和电刺激诱发的反应受到同等程度的抑制。4. 测试电击强度越高,正中神经诱发的抑制量越小。在手腕持续伸展时,伸肌中的抑制也较小,或者如果大脑中诱发的电刺激电流在运动皮层上从后向前流动而不是相反方向流动时,抑制也较小。肘部正中神经刺激后,第一背侧骨间肌和肱桡肌经颅磁刺激诱发的测试反应未受到抑制。指神经刺激未能抑制伸肌中的运动电位。5. 在桡神经刺激后15和17毫秒施加的测试刺激显著抑制了经颅磁刺激在前臂屈肌中诱发的肌电图反应。6. 在患有局灶性丘脑病变的患者中,该患者有肌张力障碍姿势且体感诱发电位的N20成分缺失但力量正常,正中神经刺激未能抑制前臂伸肌中磁刺激诱发的反应。7. 我们提出,正中神经肌肉传入神经的激活可抑制控制作用于手部的拮抗前臂伸肌的皮质区域的兴奋性。这种抑制作用发生在短潜伏期,可能通过对比皮质脊髓细胞拮抗池的共同激活来辅助介导交互抑制的脊髓通路。

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