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牛蛙(牛蛙)内耳的力学原理:接触膜和围耳管。

Mechanics of the inner ear of the bullfrog (Rana catesbeiana): the contact membranes and the periotic canal.

作者信息

Purgue A P, Narins P M

机构信息

Department of Physiological Science, UCLA, Los Angeles, CA 90095-1606, USA.

出版信息

J Comp Physiol A. 2000 May;186(5):481-8. doi: 10.1007/s003590050446.

Abstract

The frog inner ear consists of a complex of fluid-filled membranous sacs and canals containing eight distinct clusters of sensory hair cells. In this study we attempt to delineate the potential pathways for acoustic energy flow toward two of these clusters located within the amphibian papilla and the basilar papilla. Detailed morphological measurements of the periotic canal based on internal casts of the inner ear in the bullfrog (Rana catesbeiana) revealed that it is divided into a wide, tapered section and a narrower section comprised of two branches one short and blind projecting into the endolymphatic space and another longer, terminating in the round window. Additionally, we used laser Doppler velocimetry to record the velocity responses of the contact membranes of the amphibian papilla and basilar papilla. We found that the acoustic energy flow through these two structures is frequency dependent such that the amphibian papilla contact membrane displays a peak velocity amplitude at frequencies less than 500 Hz, whereas the basilar papilla contact membrane velocity response exhibits a maximum above 1,100 Hz. Our data advocate a mechanical substrate underlying the frequency segregation in the auditory nerve fibers innervating the amphibian papilla and the basilar papilla.

摘要

青蛙的内耳由充满液体的膜性囊和管道组成,其中包含八个不同的感觉毛细胞簇。在本研究中,我们试图描绘声能流向位于两栖乳头和基底乳头内的其中两个簇的潜在途径。基于牛蛙(Rana catesbeiana)内耳内部铸型对围淋巴导管进行的详细形态学测量显示,它分为一个宽的、逐渐变细的部分和一个较窄的部分,较窄部分由两个分支组成,一个短而盲端,伸入内淋巴间隙,另一个较长,终止于圆窗。此外,我们使用激光多普勒测速仪记录两栖乳头和基底乳头接触膜的速度响应。我们发现,通过这两个结构的声能流与频率有关,使得两栖乳头接触膜在频率低于500Hz时显示出峰值速度幅度,而基底乳头接触膜速度响应在高于1100Hz时表现出最大值。我们的数据支持了支配两栖乳头和基底乳头的听神经纤维频率分离的机械基础。

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