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Rapid task-related plasticity of spectrotemporal receptive fields in primary auditory cortex.

机译:在初级听觉皮层中,与时空相关的快速与任务相关的可塑性。

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摘要

We investigated the hypothesis that task performance can rapidly and adaptively reshape cortical receptive field properties in accord with specific task demands and salient sensory cues. We recorded neuronal responses in the primary auditory cortex of behaving ferrets that were trained to detect a target tone of any frequency. Cortical plasticity was quantified by measuring focal changes in each cell's spectrotemporal response field (STRF) in a series of passive and active behavioral conditions. STRF measurements were made simultaneously with task performance, providing multiple snapshots of the dynamic STRF during ongoing behavior. Attending to a specific target frequency during the detection task consistently induced localized facilitative changes in STRF shape, which were swift in onset. Such modulatory changes may enhance overall cortical responsiveness to the target tone and increase the likelihood of 'capturing' the attended target during the detection task. Some receptive field changes persistedfor hours after the task was over and hence may contribute to long-term sensory memory.
机译:我们研究了以下假设:任务执行可以根据特定的任务要求和明显的感觉提示快速而自适应地重塑皮质接受野属性。我们在行为雪貂的初级听觉皮层中记录了神经元反应,这些雪貂经过训练可以检测任何频率的目标音调。皮质可塑性通过在一系列被动和主动行为条件下测量每个细胞的光谱时域响应场(STRF)中的焦点变化来量化。 STRF测量与任务执行同时进行,可在进行中的行为期间提供动态STRF的多个快照。在检测任务期间注意特定的目标频率,会持续引起STRF形状的局部促进变化,这种变化起病迅速。这样的调制变化可以增强总体皮层对目标音调的响应度,并增加在检测任务期间“捕获”参与目标的可能性。任务结束后,某些感受野的变化会持续数小时,因此可能有助于长期的感觉记忆。

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