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离体半规管上皮极化的机制与效应

Mechanisms and effects of transepithelial polarization in the isolated semicircular canal.

作者信息

Norris C H, Miller A J, Perin P, Holt J C, Guth P S

机构信息

Department of Otolaryngology-Head and Neck Surgery, Tulane University Medical School, New Orleans, LA 70112, USA.

出版信息

Hear Res. 1998 Sep;123(1-2):31-40. doi: 10.1016/s0378-5955(98)00096-3.

Abstract

Previous studies have shown that galvanic stimulation of semicircular canal organs can modulate their afferent discharge. However, it has not been resolved whether this modulation derived from direct stimulation of hair cells, afferent nerve fibers, some combination of the two, or some as yet unknown path. This problem is addressed in the present study. Experiments were designed first to determine the gross current path necessary for the DC current to modulate afferent firing. These led to the conclusion that the current path had to flow between endolymph and perilymph across the neuroepithelium. Next, the various components in this established path were considered: the afferents, the hair cells, between the hair cells, or some combination of the three. These experiments led to the conclusion that the current pathway was across the hair cells causing transmitter release and thus affecting afferent activity.

摘要

先前的研究表明,对半规管器官进行电刺激可以调节其传入放电。然而,这种调节是源于对毛细胞、传入神经纤维的直接刺激,还是两者的某种组合,亦或是某种未知途径,目前尚无定论。本研究旨在解决这一问题。实验首先设计用于确定直流电调节传入放电所需的大致电流路径。这些实验得出的结论是,电流路径必须在内淋巴和外淋巴之间穿过神经上皮。接下来,考虑这条既定路径中的各种成分:传入神经、毛细胞、毛细胞之间,或者这三者的某种组合。这些实验得出的结论是,电流通路穿过毛细胞,导致递质释放,从而影响传入活动。

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