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Multisensory Plasticity in Superior Colliculus Neurons is Mediated by Association Cortex

机译:上皮囊神经元的多感觉可塑性是由联想皮层介导的

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摘要

The ability to integrate information from different senses, and thereby facilitate detecting and localizing events, normally develops gradually in cat superior colliculus (SC) neurons as experience with cross-modal events is acquired. Here, we demonstrate that the portal for this experience-based change is association cortex. Unilaterally deactivating this cortex whenever visual-auditory events were present resulted in the failure of ipsilateral SC neurons to develop the ability to integrate those cross-modal inputs, even though they retained the ability to respond to them. In contrast, their counterparts in the opposite SC developed this capacity normally. The deficits were eliminated by providing cross-modal experience when cortex was active. These observations underscore the collaborative developmental processes that take place among different levels of the neuraxis to adapt the brain's multisensory (and sensorimotor) circuits to the environment in which they will be used.
机译:通常,随着获得跨模式事件的经验,在猫上丘(SC)神经元中,逐渐整合来自不同感觉的信息并由此促进检测和定位事件的能力。在这里,我们证明了这种基于体验的更改的门户是关联皮质。每当出现视觉听觉事件时,单侧停用该皮质都会导致同侧SC神经元无法发展整合那些交叉模式输入的能力,即使它们保留了对它们进行响应的能力。相反,相对的SC的同行则正常地发展了这种能力。当皮质活跃时,通过提供交叉模式的经验可以消除这些缺陷。这些观察结果强调了在神经元的不同水平之间发生的协作发展过程,以使大脑的多感觉(和感觉运动)电路适应将要使用它们的环境。

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