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早发性和迟发性耳聋后皮质传入纤维向背侧听觉皮层的跨模态重组。

Cross-modal reorganization of cortical afferents to dorsal auditory cortex following early- and late-onset deafness.

作者信息

Kok Melanie A, Chabot Nicole, Lomber Stephen G

机构信息

Graduate Program in Neuroscience, University of Western Ontario, London, Ontario, N6A 5C1, Canada; Schulich School of Medicine and Dentistry, University of Western Ontario, London, Ontario, N6A 5C1, Canada; Cerebral Systems Laboratory, University of Western Ontario, London, Ontario, N6A 5C1, Canada.

出版信息

J Comp Neurol. 2014 Feb 15;522(3):654-75. doi: 10.1002/cne.23439.

Abstract

Cat auditory cortex is known to undergo cross-modal reorganization following deafness, such that behavioral advantages in visual motion detection are abolished when a specific region of deaf auditory cortex, the dorsal zone (DZ), is deactivated. The purpose of the present investigation was to examine the connectional adaptations that might subserve this plasticity. We deposited biotinylated dextran amine (BDA; 3,000 MW), a retrograde tracer, unilaterally into the posterior portion of the suprasylvian fringe, corresponding to area DZ of hearing, early-deafened (onset <1 month), and late-deafened (onset >3 months) cats to reveal cortical afferent projections. Overall, the pattern of cortical projections to DZ was similar in both hearing and deafened animals. However, there was a progressive increase in projection strength among hearing and late- and early-deafened cats from an extrastriate visual cortical region known to be involved in the processing of visual motion, the posterolateral lateral suprasylvian area (PLLS). Additionally, although no such change was documented for the posteromedial lateral suprasylvian area (PMLS), labeled neurons were present within a subregion of PMLS devoted to foveal vision in both late- and early-deafened animals but not in hearing controls. PMLS is also an extrastriate visual motion processing area and is widely considered to be the homolog of primate middle temporal area. No changes in auditory cortical connectivity were observed among groups. These observations suggest that amplified cortical projections from extrastriate visual areas involved in visual motion processing to DZ may contribute to the cross-modal reorganization that functionally manifests as superior visual motion detection ability in the deaf animal.

摘要

已知猫的听觉皮层在耳聋后会发生跨模态重组,即当耳聋听觉皮层的特定区域——背侧区(DZ)失活时,视觉运动检测中的行为优势就会消失。本研究的目的是检查可能支持这种可塑性的连接适应性。我们将逆行示踪剂生物素化葡聚糖胺(BDA;3000MW)单侧注入上薛氏缘后部,对应于听力正常、早期耳聋(发病<1个月)和晚期耳聋(发病>3个月)猫的听觉DZ区,以揭示皮层传入投射。总体而言,听力正常和耳聋动物中投射到DZ区的皮层投射模式相似。然而,从一个已知参与视觉运动处理的纹外视觉皮层区域——后外侧上薛氏区(PLLS),投射到听力正常、晚期和早期耳聋猫的投射强度逐渐增加。此外,虽然内侧后外侧上薛氏区(PMLS)没有记录到这种变化,但在晚期和早期耳聋动物中,PMLS中专门负责中央凹视觉的一个子区域内存在标记神经元,而听力正常的对照组中则没有。PMLS也是一个纹外视觉运动处理区域,被广泛认为是灵长类动物颞中区的同源物。各组之间未观察到听觉皮层连接的变化。这些观察结果表明,从参与视觉运动处理的纹外视觉区域到DZ区的放大皮层投射可能有助于跨模态重组,这种重组在功能上表现为耳聋动物具有卓越的视觉运动检测能力。

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