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调频-调频蝙蝠(帕氏叶鼻蝠)小脑神经元对声学刺激的反应。

Responses of cerebellar neurons of the CF-FM bat, Pteronotus parnellii to acoustic stimuli.

作者信息

Jen P H, Sun X, Kamada T

出版信息

Brain Res. 1982 Dec 2;252(1):167-71. doi: 10.1016/0006-8993(82)90992-1.

Abstract

Single units (125) which faithfully discharged action potentials to acoustic stimuli (35 ms in duration with 0.5 ms rise and decay times) were recorded in the cerebellar vermis and hemispheres of the CF-FM bat, Pteronotus parnellii. These units had response latencies between 1.5 and 27 ms and minimum thresholds between 2 and 83.5 dB SPL. Best frequencies (BFs) of these units ranged from 30.32 to 79.28 kHz, but more than half (64 units, 51.2%) were between 59.73 and 63.32 kHz. While most tuning curves of these units were either broad or irregular, those curves with BFs tuned at around 61 kHz which is the frequency of the predominant CF component of the bat's echolocation signals were extremely narrow with Q10-dB values as high as 153. Those units (29) with BFs tuned near the 61 kHz also showed off-responses. These data indicate that auditory specialization for processing of species-specific orientation signals also exists in the cerebellum of this bat.

摘要

在CF-FM蝙蝠(帕氏油蝠)的小脑蚓部和半球中记录到了125个单神经元,它们能忠实地对听觉刺激(持续时间35毫秒,上升和衰减时间0.5毫秒)发放动作电位。这些神经元的反应潜伏期在1.5至27毫秒之间,最小阈值在2至83.5分贝声压级之间。这些神经元的最佳频率(BFs)范围为30.32至79.28千赫,但超过一半(64个神经元,51.2%)在59.73至63.32千赫之间。虽然这些神经元的大多数调谐曲线要么很宽要么不规则,但那些最佳频率调谐在61千赫左右(即蝙蝠回声定位信号主要CF成分的频率)的曲线极其狭窄,Q10-dB值高达153。那些最佳频率调谐在61千赫附近的29个神经元也表现出了抑制反应。这些数据表明,这种蝙蝠的小脑也存在对处理物种特异性定向信号的听觉特化。

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