Cantekin E I, Doyle W J, Reichert T J, Phillips D C, Bluestone C D
Ann Otol Rhinol Laryngol. 1979 Jan-Feb;88(1 Pt 1):40-51. doi: 10.1177/000348947908800108.
The recent studies of the anatomy of the eustachian tube and related structures in the Rhesus monkey (Macaca mulatta) have shown that the monkey tubal system is similar to the human. This investigation in Rhesus monkeys was an attempt to verify previous studies in other animals that the tensor veli palatini muscle was the only dilator of the eustachian tube. Two unipolar stimulating electrodes were introduced into the foramen ovale, and the mandibular branch of the trigeminal nerve was electrically stimulated. Simultaneously, pressure-flow recordings through the eustachian tube were monitored. Stimulus-response relationships were obtained for five Rhesus monkeys. The degree of tubal dilation by the tensor veli palatini muscle contraction was shown to be a function of stimulating current levels. Artifically induced dilations were quite similar to the physiological dilations during swallowing when these animals were tested alert. Following complete transection of the tensor muscle, regardless of the stimulus level, no tubal dilations were observed. Stimulation of the nerve to the internal pterygoid and stimulation of the levator veli palatini muscle induced only constrictions of the tube. The tensor veli palatini muscle is the only paratubal muscle responsible for active dilation of the eustachian tube in the Rhesus monkey, and its motor innervation is the mandibular division of the trigeminal nerve.
最近对恒河猴(猕猴)咽鼓管及其相关结构的解剖学研究表明,猴的咽鼓管系统与人类相似。对恒河猴的这项研究旨在验证之前在其他动物身上的研究结果,即腭帆张肌是咽鼓管唯一的扩张肌。将两个单极刺激电极插入卵圆孔,对三叉神经下颌支进行电刺激。同时,监测通过咽鼓管的压力 - 流量记录。获得了五只恒河猴的刺激 - 反应关系。腭帆张肌收缩引起的咽鼓管扩张程度显示为刺激电流水平的函数。当这些动物在清醒状态下接受测试时,人工诱导的扩张与吞咽时的生理扩张非常相似。在完全切断腭帆张肌后,无论刺激水平如何,均未观察到咽鼓管扩张。刺激翼内肌神经和腭帆提肌仅引起咽鼓管收缩。腭帆张肌是恒河猴中负责咽鼓管主动扩张的唯一咽旁肌,其运动神经支配为三叉神经下颌支。