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猫壳核神经元在听觉辨别过程中的反应特性

Response properties of neurons in the cat's putamen during auditory discrimination.

作者信息

Zhao Zhenling, Sato Yu, Qin Ling

机构信息

Department of Physiology, Interdisciplinary Graduate School of Medicine and Engineering, University of Yamanashi, Chuo, Yamanashi 409-3898, Japan; Jinan Biomedicine R&D Center, School of Life Science and Technology, Jinan University, Guangzhou 510632, People's Republic of China.

Department of Physiology, Interdisciplinary Graduate School of Medicine and Engineering, University of Yamanashi, Chuo, Yamanashi 409-3898, Japan.

出版信息

Behav Brain Res. 2015 Oct 1;292:448-62. doi: 10.1016/j.bbr.2015.07.002. Epub 2015 Jul 7.

Abstract

The striatum integrates diverse convergent input and plays a critical role in the goal-directed behaviors. To date, the auditory functions of striatum are less studied. Recently, it was demonstrated that auditory cortico-striatal projections influence behavioral performance during a frequency discrimination task. To reveal the functions of striatal neurons in auditory discrimination, we recorded the single-unit spike activities in the putamen (dorsal striatum) of free-moving cats while performing a Go/No-go task to discriminate the sounds with different modulation rates (12.5 Hz vs. 50 Hz) or envelopes (damped vs. ramped). We found that the putamen neurons can be broadly divided into four groups according to their contributions to sound discrimination. First, 40% of neurons showed vigorous responses synchronized to the sound envelope, and could precisely discriminate different sounds. Second, 18% of neurons showed a high preference of ramped to damped sounds, but no preference for modulation rate. They could only discriminate the change of sound envelope. Third, 27% of neurons rapidly adapted to the sound stimuli, had no ability of sound discrimination. Fourth, 15% of neurons discriminated the sounds dependent on the reward-prediction. Comparing to passively listening condition, the activities of putamen neurons were significantly enhanced by the engagement of the auditory tasks, but not modulated by the cat's behavioral choice. The coexistence of multiple types of neurons suggests that the putamen is involved in the transformation from auditory representation to stimulus-reward association.

摘要

纹状体整合多种汇聚输入,并在目标导向行为中发挥关键作用。迄今为止,对纹状体听觉功能的研究较少。最近,有研究表明听觉皮层-纹状体投射在频率辨别任务中会影响行为表现。为了揭示纹状体神经元在听觉辨别中的功能,我们在自由活动的猫执行“Go/No-go”任务以辨别不同调制率(12.5赫兹与50赫兹)或包络(阻尼与斜坡)的声音时,记录了壳核(背侧纹状体)中的单单元放电活动。我们发现,壳核神经元根据其对声音辨别的贡献可大致分为四类。第一,40%的神经元表现出与声音包络同步的强烈反应,并且能够精确辨别不同声音。第二,18%的神经元对斜坡声音比对阻尼声音有高度偏好,但对调制率无偏好。它们只能辨别声音包络的变化。第三,27%的神经元对声音刺激迅速适应,没有声音辨别能力。第四,15%的神经元根据奖励预测来辨别声音。与被动聆听状态相比,听觉任务的参与显著增强了壳核神经元的活动,但不受猫行为选择的调节。多种类型神经元的共存表明壳核参与了从听觉表征到刺激-奖励关联的转换。

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