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病理性及实验性诱导失明会诱发猫初级视觉皮层的听觉活动。

Pathological and experimentally induced blindness induces auditory activity in the cat primary visual cortex.

作者信息

Yaka R, Yinon U, Rosner M, Wollberg Z

机构信息

Department of Zoology, The George S. Wise Faculty of Life Sciences, Tel-Aviv University, Israel.

出版信息

Exp Brain Res. 2000 Mar;131(1):144-8. doi: 10.1007/s002219900295.

Abstract

Early blindness in humans and experimental visual deprivation in animal models are known to induce compensatory somatosensory and/or auditory activation of the visual cortex. An abnormal hydrocephalic cat with extreme malformation of the visual system, born in our breeding colony, rendered a good model system for investigating possible cross-modal compensation in such a pathological case. For comparison, we used normal and neonatally enucleated cats. When introduced to a novel environment, the abnormal cat behaved as if it was completely blind, yet it responded normally to auditory stimuli. As anticipated, single cells in the visual cortex of normal cats responded to visual, but not to auditory stimuli. In the visual cortex of enucleated cats, flashes of light did not elicit field-evoked potentials or single-unit responses. However, several cells did respond to various auditory stimuli. In the remnant visual cortex of the abnormal cat, auditory stimuli evoked field potentials and single-cell responses. Unexpectedly, however, unlike the enucleated cats, in the abnormal cat, flashes of light also elicited field-evoked potentials. Judging by its behavior, it is very likely that this deformed cat had completely lost its ability to perceive images, but had probably retained some sensitivity to light.

摘要

人类早期失明以及动物模型中的实验性视觉剥夺已知会诱发视觉皮层的代偿性体感和/或听觉激活。我们繁殖群体中出生的一只患有异常脑积水且视觉系统极度畸形的猫,为研究这种病理情况下可能的跨模态补偿提供了一个良好的模型系统。为了进行比较,我们使用了正常猫和新生时摘除眼球的猫。当被引入一个新环境时,这只异常的猫表现得好像完全失明了,但它对听觉刺激的反应正常。正如预期的那样,正常猫视觉皮层中的单细胞对视觉刺激有反应,但对听觉刺激没有反应。在摘除眼球的猫的视觉皮层中,闪光不会引发场诱发电位或单细胞反应。然而,有几个细胞确实对各种听觉刺激有反应。在这只异常猫残留的视觉皮层中,听觉刺激诱发了场电位和单细胞反应。然而,出乎意料的是,与摘除眼球的猫不同,在这只异常猫中,闪光也会引发场诱发电位。从它的行为判断,这只畸形猫很可能已经完全丧失了感知图像的能力,但可能仍保留了对光的一些敏感性。

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