Ongerboer de Visser B W, Cruccu G, Manfredi M, Koelman J H
Department of Clinical Neurophysiology, University of Amsterdam, The Netherlands.
Brain. 1990 Jun;113 ( Pt 3):781-92. doi: 10.1093/brain/113.3.781.
The masseter inhibitory reflex (MIR) was investigated in 16 patients with localized brainstem lesions involving the trigeminal system. The MIR consists of two phases of EMG silence (S1 and S2) evoked by stimulation of the mental nerve during maximal clenching of the teeth. The extent of the lesions was assessed by neurological examination, nuclear magnetic resonance imaging (MRI), and recording of trigeminal reflexes with known paths (jaw jerk and blink reflex). The MIR appeared to be abnormal in lesions involving the pontine tegmentum, from the pontomedullary junction to midpons, and some lesions selectively affected one component of the MIR, proving that S1 and S2 are relayed by independent circuits. The results indicate that afferent fibres for S1, which reach the pons via the trigeminal sensory root, enter the ipsilateral trigeminal spinal tract and terminate at the level of the midpons; impulses are then relayed by interneurons to the ipsilateral and contralateral trigeminal motor nuclei. The afferent fibres for S2 follow a similar path, but descend to the pontomedullary junction; at this level impulses are conducted along bilateral interneuronal paths, which probably ascend through the lateral reticular formation, before connecting with the trigeminal motor nucleus on either side. Analysis of MIR recordings can be of particular value because brainstem inhibitory reflexes cannot be tested by clinical examination.
对16例累及三叉神经系统的局限性脑干病变患者进行了咬肌抑制反射(MIR)研究。MIR由在最大程度咬紧牙关时刺激颏神经诱发的两个肌电图静息期(S1和S2)组成。通过神经学检查、核磁共振成像(MRI)以及记录具有已知路径的三叉神经反射(下颌反射和瞬目反射)来评估病变范围。在累及脑桥被盖部(从脑桥延髓交界处至脑桥中部)的病变中,MIR似乎异常,并且一些病变选择性地影响MIR的一个成分,这证明S1和S2是由独立的神经回路传导的。结果表明,S1的传入纤维经三叉神经感觉根到达脑桥,进入同侧三叉神经脊髓束并在脑桥中部水平终止;然后冲动由中间神经元传导至同侧和对侧三叉神经运动核。S2的传入纤维走行相似,但下行至脑桥延髓交界处;在此水平,冲动沿双侧中间神经元路径传导,这些路径可能通过外侧网状结构上行,然后与两侧的三叉神经运动核相连。对MIR记录的分析可能具有特殊价值,因为脑干抑制反射无法通过临床检查进行检测。