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Competition and convergence between auditory and cross-modal visual inputs to primary auditory cortical areas

机译:听觉和跨模态视觉输入到主要听觉皮层区域之间的竞争和融合

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摘要

Sensory neocortex is capable of considerable plasticity after sensory deprivation or damage to input pathways, especially early in development. Although plasticity can often be restorative, sometimes novel, ectopic inputs invade the affected cortical area. Invading inputs from other sensory modalities may compromise the original function or even take over, imposing a new function and preventing recovery. Using ferrets whose retinal axons were rerouted into auditory thalamus at birth, we were able to examine the effect of varying the degree of ectopic, cross-modal input on reorganization of developing auditory cortex. In particular, we assayed whether the invading visual inputs and the existing auditory inputs competed for or shared postsynaptic targets and whether the convergence of input modalities would induce multisensory processing. We demonstrate that although the cross-modal inputs create new visual neurons in auditory cortex, some auditory processing remains. The degree of damage to auditory input to the medial geniculate nucleus was directly related to the proportion of visual neurons in auditory cortex, suggesting that the visual and residual auditory inputs compete for cortical territory. Visual neurons were not segregated from auditory neurons but shared target space even on individual target cells, substantially increasing the proportion of multisensory neurons. Thus spatial convergence of visual and auditory input modalities may be sufficient to expand multisensory representations. Together these findings argue that early, patterned visual activity does not drive segregation of visual and auditory afferents and suggest that auditory function might be compromised by converging visual inputs. These results indicate possible ways in which multisensory cortical areas may form during development and evolution. They also suggest that rehabilitative strategies designed to promote recovery of function after sensory deprivation or damage need to take into account that sensory cortex may become substantially more multisensory after alteration of its input during development.
机译:感觉剥夺或输入通道受损后,尤其是在发育早期,感觉新皮层具有相当大的可塑性。尽管可塑性通常可以恢复,但有时异位输入会侵入受影响的皮层区域。来自其他感觉形态的输入的入侵可能会损害原始功能,甚至接管新功能,并阻止恢复。使用出生时视网膜轴突被重新路由到听觉丘脑的雪貂,我们能够检查异位,交叉模式输入程度对发育中的听觉皮层组织的影响。特别是,我们分析了入侵的视觉输入和现有的听觉输入是否竞争或共享突触后目标,以及输入方式的融合是否会诱发多感觉处理。我们证明,尽管跨模式输入在听觉皮层中创建了新的视觉神经元,但仍有一些听觉处理。听觉输入到内侧膝状核的损害程度与听觉皮层中视觉神经元的比例直接相关,表明视觉和残余听觉输入竞争皮层区域。视觉神经元并未与听觉神经元分离,而是甚至在单个目标细胞上也共享目标空间,从而大大增加了多感觉神经元的比例。因此,视觉和听觉输入模态的空间会聚可能足以扩展多感官表示。这些发现共同表明,早期的,有图案的视觉活动不会推动视觉和听觉传入物体的分离,并暗示听觉功能可能会因视觉输入的融合而受到损害。这些结果表明在发展和进化过程中可能形成多感皮层区域的方式。他们还建议,旨在促进感觉剥夺或损害后功能恢复的康复策略需要考虑到感觉皮层在发育过程中改变其输入后可能变得更加多感觉。

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