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人类咬肌运动单位对牙齿机械刺激的反射反应。

Reflex responses of motor units in human masseter muscle to mechanical stimulation of a tooth.

作者信息

Türker K S, Brodin P, Miles T S

机构信息

Department of Physiology, University of Adelaide, Australia.

出版信息

Exp Brain Res. 1994;100(2):307-15. doi: 10.1007/BF00227200.

Abstract

The reflex responses evoked by controlled mechanical stimulation of an upper central incisor tooth in single motor units in the human masseter muscle were examined. The stimuli were (brisk) taps and (slow) pushes of about 2 N peak force, applied orthogonally to the labial surface of the ipsilateral upper central incisor tooth. The reflex responses of the motor units were characterised by analysis of the changes in the durations of the first and second interspike intervals (ISIs) immediately following the stimulus. A significant increase in the duration of these ISIs in comparison with pre-stimulus ISIs indicated inhibition, and significant shortening indicated excitation. Twenty masseter motor units were tested with both the pushes and the taps. The brisk taps elicited a significant reflex inhibition in 16 of the 20 motor units at a latency of 13 ms and duration of 37 ms. This inhibition was followed by significant excitation in 11 of the 20 units at latencies of 71 ms, lasting for 29 ms. The short-latency response to slow pushes was significant inhibition in four units: significant excitation in one unit and no response in 15 units. The slow pushes evoked a significant long-latency excitatory reflex response in 12 of the 20 units at latencies of 77 ms and lasting for 40 ms. The shapes and amplitudes of the compound post-synaptic potentials underlying the reflex responses in the motoneurones were estimated. It is concluded that stimulation of periodontal mechanoreceptors usually activates an excitatory reflex pathway to the jaw-closing motoneurones. This probably helps to grip the food bolus between the teeth during chewing. However, when the rate of application of the stimulus is large enough, a short-latency inhibitory response is evoked which, if of sufficient duration, may over-ride the subsequent excitatory response. Inhibition of the jaw-closing muscles will tend to protect the teeth and soft tissues when one bites unexpectedly on a hard object while chewing.

摘要

研究人员对人类咬肌单个运动单位中,通过控制机械刺激上颌中切牙所诱发的反射反应进行了检测。刺激方式为(快速)轻敲和(缓慢)推压,峰值力约为2N,垂直施加于同侧上颌中切牙的唇面。通过分析刺激后即刻出现的第一和第二个峰间间隔(ISI)持续时间的变化,来表征运动单位的反射反应。与刺激前的ISI相比,这些ISI持续时间显著增加表明抑制,显著缩短则表明兴奋。对20个咬肌运动单位同时进行了推压和轻敲测试。快速轻敲在20个运动单位中的16个诱发了显著的反射抑制,潜伏期为13ms,持续时间为37ms。在20个单位中的11个,这种抑制之后在71ms潜伏期出现了显著的兴奋,持续29ms。对缓慢推压的短潜伏期反应在4个单位中为显著抑制:1个单位为显著兴奋,15个单位无反应。缓慢推压在20个单位中的12个诱发了显著的长潜伏期兴奋性反射反应,潜伏期为77ms,持续40ms。对运动神经元反射反应背后的复合突触后电位的形状和幅度进行了估计。得出的结论是,牙周机械感受器的刺激通常会激活一条通向闭口运动神经元的兴奋性反射通路。这可能有助于在咀嚼过程中,将食团夹在牙齿之间。然而,当刺激施加速率足够大时,会诱发短潜伏期抑制反应,如果持续时间足够长,可能会压倒随后的兴奋反应。当一个人在咀嚼时意外咬到硬物时,闭口肌肉的抑制将倾向于保护牙齿和软组织。

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