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肌梭和牙周三叉神经传入纤维调节舌下运动神经元活动。

Muscle spindle and periodontal trigeminal afferents modulate the hypoglossal motoneuronal activity.

作者信息

Tolu E, Caria M A, Simula M E, Lacana P

机构信息

Institute of Human Physiology, School of Medicine, University of Sassari, Italy.

出版信息

Arch Ital Biol. 1994 Mar;132(2):93-104.

PMID:8042897
Abstract

Hypoglossal responses to electrical or natural activation of the afferent fibers of the masseteric nerve and to periodontal mechanoreceptors were recorded in rats. Electrical stimulation of the masseteric nerve, at an intensity adequate to excite prevalently the primary spindle afferents, induced various sequences of excitation-inhibition and inhibition-excitation in 55% of the tested hypoglossal motoneurons. Responses were characterized by excitation, inhibition or excitation-inhibition sequences occurring at short and long latencies. Different pattern of responses were evoked in both the protrusive and the retractive motoneurons of the homolateral hypoglossal nucleus. Moreover, jaw lowering and pressure on the incisor tooth induced antagonistic and synergistic effects on the electrical activity of the same hypoglossal motoneurons. The results show for the first time that afferent signals from both muscle spindles and periodontal receptors modulate the activity of the hypoglossal motoneurons aimed at controlling the tongue position in the mouth during mastication.

摘要

在大鼠中记录了舌下神经对咬肌神经传入纤维的电刺激或自然激活以及对牙周机械感受器的反应。以足以主要兴奋初级肌梭传入纤维的强度对咬肌神经进行电刺激,在55%的受试舌下运动神经元中诱发了各种兴奋-抑制和抑制-兴奋序列。反应的特征是在短潜伏期和长潜伏期出现兴奋、抑制或兴奋-抑制序列。在同侧舌下神经核的前伸和回缩运动神经元中诱发了不同的反应模式。此外,下颌降低和对切牙施加压力对同一舌下运动神经元的电活动产生了拮抗和协同作用。结果首次表明,来自肌梭和牙周感受器的传入信号调节舌下运动神经元的活动,旨在控制咀嚼过程中舌头在口腔中的位置。

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