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人类三叉神经运动系统的功能组织:一项神经生理学研究。

Functional organization of the trigeminal motor system in man. A neurophysiological study.

作者信息

Cruccu G, Berardelli A, Inghilleri M, Manfredi M

机构信息

Department of Neuroscience, University of Rome La Sapienza, Italy.

出版信息

Brain. 1989 Oct;112 ( Pt 5):1333-50. doi: 10.1093/brain/112.5.1333.

DOI:10.1093/brain/112.5.1333
PMID:2804615
Abstract

Transcranial stimulation (TCS) in intact human subjects was used to investigate the corticobulbar projections and the functional organization of the trigeminal motor system. Both electrical (with the anode overlying the face area of the motor cortex) and magnetic TCS (with the coil at the vertex) excite the upper motoneurons projecting to the trigeminal motor nucleus, evoking motor potentials (C-MEPs) in the jaw-closing and suprahyoid muscles, but only during voluntary contraction. At least 30% of jaw-closing motoneurons are reached by direct fast-conducting corticobulbar fibres; these projections are mainly crossed. Suprahyoid motoneurons are also reached by fast-conducting corticobulbar fibres; these projections are probably bilateral. In the masseter, electrical TCS also evokes an ipsilateral motor response (R-MEP), followed by a later wave (U), and bilateral inhibitory periods. The R-MEP is secondary to excitation of the motor trigeminal root; the U wave probably results from the simultaneous excitation of Ia afferents in the root and ipsilaterally projecting corticofugal fibres; the inhibitory periods are largely due to activation of exteroceptive afferents in the root. Magnetic TCS, avoiding spread of current to the trigeminal root, evokes C-MEPs but not R-MEPs or U waves. The masseter inhibitory period after magnetic TCS may be due to excitation of corticofugal inhibitory fibres and to mechanical activation of Golgi tendon organs.

摘要

在完整的人体受试者中,经颅刺激(TCS)被用于研究皮质延髓投射和三叉神经运动系统的功能组织。电刺激(阳极置于运动皮层的面部区域上方)和磁刺激(线圈置于头顶)均能兴奋投射至三叉神经运动核的上运动神经元,在咬肌和舌骨上肌群诱发运动电位(C-MEPs),但仅在自主收缩期间出现。至少30%的咬肌运动神经元由直接的快速传导皮质延髓纤维支配;这些投射主要是交叉性的。舌骨上肌群运动神经元也由快速传导皮质延髓纤维支配;这些投射可能是双侧性的。在咬肌中,电刺激还可诱发同侧运动反应(R-MEP),随后出现一个较晚的波(U波)以及双侧抑制期。R-MEP是三叉神经运动根兴奋的继发反应;U波可能是由于神经根中Ia传入纤维和同侧投射的皮质传出纤维同时兴奋所致;抑制期主要是由于神经根中外感受性传入纤维的激活。磁刺激可避免电流扩散至三叉神经运动根,能诱发C-MEPs,但不能诱发R-MEPs或U波。磁刺激后咬肌的抑制期可能是由于皮质传出抑制纤维的兴奋以及高尔基腱器官的机械性激活。

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