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雪貂(白鼬)的初级听觉皮层:神经反应特性与拓扑组织

Primary auditory cortex in the ferret (Mustela putorius): neural response properties and topographic organization.

作者信息

Phillips D P, Judge P W, Kelly J B

机构信息

Department of Psychology, Carleton University, Ottawa, Ont., Canada.

出版信息

Brain Res. 1988 Mar 8;443(1-2):281-94. doi: 10.1016/0006-8993(88)91622-8.

Abstract

Microelectrode recording studies were made of the crown of the ectosylvian auditory cortex of barbiturate-anesthetized ferrets, using calibrated, sealed acoustic stimulus delivery systems. We confirmed our previous finding using free-field stimuli that this region of the ferret's cerebral cortex contains a tonotopically organized field in which neurons are briskly excited by the onset of tonal stimuli. The vast majority of neurons in this field were narrowly tuned to tone pulse frequency, with Q factors comparable to those described for cortical cells in other species. The distribution of minimum tone thresholds across the frequency representation of this field paralleled the behavioral audiogram in the same species. The majority of neurons received input from both ears, and the natures of the influences exerted by tonal stimuli at the two ears were similar in form to those described for other carnivores. The various binaural cell types had characteristic frequencies that spanned the entire tonal spectrum represented in the cortex. Preliminary mapping studies revealed that there may be a topographic segregation of cells according to their binaural interactions. The basic properties of cells in this region of the ferret's cerebrum are similar to those previously described for the cat's primary auditory cortex. The data on the binaural properties of these cells, and the spatial distribution of those cells, provide the first evidence in a species other than the cat for segregated binaural representation in the auditory cortex.

摘要

使用经过校准的密封声刺激传递系统,对巴比妥酸盐麻醉的雪貂外薛氏听觉皮层顶部进行了微电极记录研究。我们使用自由场刺激证实了我们之前的发现,即雪貂大脑皮层的这个区域包含一个音频拓扑组织的场,其中神经元在音调刺激开始时会被快速激发。该场中的绝大多数神经元对音调脉冲频率的调谐很窄,Q因子与其他物种皮层细胞的Q因子相当。该场频率表征范围内的最小音调阈值分布与同一物种的行为听力图平行。大多数神经元从双耳接收输入,并且双耳音调刺激施加的影响性质在形式上与其他食肉动物所描述的相似。各种双耳细胞类型具有跨越皮层中所代表的整个音调频谱的特征频率。初步图谱研究表明,根据细胞的双耳相互作用,可能存在细胞的拓扑分离。雪貂大脑这个区域的细胞基本特性与之前描述的猫的初级听觉皮层的特性相似。这些细胞的双耳特性数据以及这些细胞的空间分布,为猫以外的物种在听觉皮层中存在分离的双耳表征提供了首个证据。

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