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在大鼠听觉皮层中,前向抑制对偏好刺激和非偏好刺激的神经反应的非均匀影响。

Nonuniform impacts of forward suppression on neural responses to preferred stimuli and nonpreferred stimuli in the rat auditory cortex.

机构信息

Key Laboratory of Brain Functional Genomics, Ministry of Education, Shanghai Key Laboratory of Brain Functional Genomics, NYU-ECNU Institute of Brain and Cognitive Science at NYU Shanghai, School of Life Sciences, East China Normal University, Shanghai, China.

出版信息

Eur J Neurosci. 2018 Jun;47(11):1320-1338. doi: 10.1111/ejn.13943. Epub 2018 May 28.

Abstract

In natural conditions, human and animals need to extract target sound information from noisy acoustic environments for communication and survival. However, how the contextual environmental sounds impact the tuning of central auditory neurons to target sound source azimuth over a wide range of sound levels is not fully understood. Here, we determined the azimuth-level response areas (ALRAs) of rat auditory cortex neurons by recording their responses to probe tones varying with levels and sound source azimuths under both quiet (probe alone) and forward masking conditions (preceding noise + probe). In quiet, cortical neurons responded stronger to their preferred stimuli than to their nonpreferred stimuli. In forward masking conditions, an effective preceding noise reduced the extents of the ALRAs and suppressed the neural responses across the ALRAs by decreasing the response strength and lengthening the first-spike latency. The forward suppressive effect on neural response strength was increased with increasing masker level and decreased with prolonging the time interval between masker and probe. For a portion of cortical neurons studied, the effects of forward suppression on the response strength to preferred stimuli was weaker than those to nonpreferred stimuli, and the recovery from forward suppression of the response strength to preferred stimuli was earlier than that to nonpreferred stimuli. We suggest that this nonuniform forward suppression of neural responses to preferred stimuli and to nonpreferred stimuli is important for cortical neurons to maintain their relative stable preferences for target sound source azimuth and level in noisy acoustic environments.

摘要

在自然条件下,人类和动物需要从嘈杂的声环境中提取目标声音信息,以进行交流和生存。然而,在广泛的声级范围内,上下文环境声音如何影响中枢听觉神经元对目标声源方位的调谐,目前还不完全清楚。在这里,我们通过记录大鼠听觉皮层神经元在安静(仅探针)和前向掩蔽条件(前置噪声+探针)下,随着声级和声源方位变化的探针音调的反应,确定了听觉皮层神经元的方位-声级反应区(ALRA)。在安静条件下,皮层神经元对其最佳刺激的反应比非最佳刺激的反应更强。在前向掩蔽条件下,有效的前置噪声会减小 ALRA 的范围,并通过降低反应强度和延长第一个尖峰潜伏期来抑制整个 ALRA 中的神经反应。前向抑制对神经反应强度的影响随着掩蔽水平的增加而增加,并随着掩蔽和探针之间的时间间隔延长而减小。对于部分研究的皮层神经元,前向抑制对最佳刺激的反应强度的影响弱于对非最佳刺激的反应强度,且最佳刺激的反应强度从前向抑制中的恢复比非最佳刺激的反应强度更早。我们认为,这种对最佳刺激和非最佳刺激的神经反应的非均匀前向抑制,对于皮层神经元在嘈杂的声环境中保持其对目标声源方位和水平的相对稳定的偏好是很重要的。

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