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棕蝠(棕蝠属)下丘中的听觉空间表征

Auditory space representation in the inferior colliculus of the FM bat, Eptesicus fuscus.

作者信息

Jen P H, Sun X, Chen D, Teng H

机构信息

Division of Biological Sciences, University of Missouri, Columbia 65211.

出版信息

Brain Res. 1987 Sep 1;419(1-2):7-18. doi: 10.1016/0006-8993(87)90563-4.

DOI:10.1016/0006-8993(87)90563-4
PMID:3676742
Abstract

The auditory spatial response areas of 333 inferior collicular (IC) neurons of Eptesicus fuscus were studied under free-field acoustic stimulus conditions. A stimulus was delivered from a loudspeaker placed 14 cm in front of a bat and the best frequency of an encountered neuron was determined. Then a best frequency (BF) stimulus was delivered as the loudspeaker was moved across the frontal auditory space to determine the response center of the neuron. At the response center, the neuron had the lowest minimum threshold. The stimulus was then raised 3-15 dB above the lowest minimum threshold of the neuron and the spatial response area for each stimulus intensity was measured. The response center and spatial response area of a neuron measured with a one-octave downward-sweep FM stimulus were similar to those measured with the pure tone pulse. The spatial response area of a neuron expanded asymmetrically with the stimulus intensity. High BF neurons generally had smaller spatial response areas than low BF neurons had. All 333 response centers were located in the contralateral auditory space. Response centers of low BF neurons tended to be located laterally while those of high BF neurons were located medially. Although each neuron had a point of lowest minimum threshold in the contralateral auditory space, the point-to-point representation of the auditory space was not systematically organized. This representation was not correlated with the recording sites of the neurons in the mediolateral, posteroanterior and dorsoventral axes of the IC.

摘要

在自由场声学刺激条件下,研究了棕蝠333个下丘(IC)神经元的听觉空间反应区域。刺激由放置在蝙蝠前方14厘米处的扬声器发出,并确定所遇到神经元的最佳频率。然后,当扬声器在额叶听觉空间移动时,发出最佳频率(BF)刺激,以确定神经元的反应中心。在反应中心,神经元具有最低的最小阈值。然后将刺激强度提高到高于神经元最低最小阈值3 - 15分贝,并测量每个刺激强度下的空间反应区域。用倍频程向下扫频FM刺激测量的神经元反应中心和空间反应区域与用纯音脉冲测量的相似。神经元的空间反应区域随刺激强度不对称扩展。高BF神经元的空间反应区域通常比低BF神经元的小。所有333个反应中心都位于对侧听觉空间。低BF神经元的反应中心倾向于位于外侧,而高BF神经元的反应中心位于内侧。尽管每个神经元在对侧听觉空间都有一个最低最小阈值点,但听觉空间的点对点表征并没有系统地组织起来。这种表征与IC的中外侧、前后和背腹轴上神经元的记录位点无关。

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