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大鼠的三叉神经感觉运动机制与进食

Trigeminal sensorimotor mechanisms and eating in the rat.

作者信息

Zeigler H P, Semba K, Egger M D, Jacquin M F

出版信息

Brain Res. 1984 Aug 6;308(1):149-54. doi: 10.1016/0006-8993(84)90927-2.

Abstract

Photographic, electrophysiological and neurobehavioral analyses were used to examine the contribution of trigeminal inputs to the behavioral organization of eating in the rat. During eating, jaw opening was always preceded by a period of perioral contact with the food source. Mechanical or electrical stimulation of oral and perioral areas in anesthetized animals elicited compound action potentials in the mylohyoid nerve (jaw-opener innervation) at short latencies and low stimulus intensities. Trigeminal orosensory deafferentation (sparing jaw muscle afferents and efferents) abolished or significantly reduced mouth opening during eating. We conclude that trigeminal orosensory inputs provide an essential link in the stimulus-response chain mediating eating in the rat.

摘要

采用摄影、电生理和神经行为学分析方法,研究三叉神经传入对大鼠进食行为组织的作用。进食过程中,下颌张开之前总会有一段口周与食物源接触的时间。对麻醉动物的口腔和口周区域进行机械或电刺激,可在短潜伏期和低刺激强度下诱发下颌舌骨神经(下颌张开肌的神经支配)产生复合动作电位。三叉神经口腔感觉去传入(保留下颌肌肉传入和传出神经)可消除或显著减少进食时的张口动作。我们得出结论,三叉神经口腔感觉传入在介导大鼠进食的刺激-反应链中提供了关键环节。

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