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首页> 外文期刊>Neuron >Input-Specific Gain Modulation by Local Sensory Context Shapes Cortical and Thalamic Responses to Complex Sounds
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Input-Specific Gain Modulation by Local Sensory Context Shapes Cortical and Thalamic Responses to Complex Sounds

机译:局部感官上下文的输入特定增益调制塑造了对复杂声音的皮质和丘脑响应。

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摘要

Sensory neurons are customarily characterized by one or more linearly weighted receptive fields describing sensitivity in sensory space and time. We show that in auditory cortical and thalamic neurons, the weight of each receptive field element depends on the pattern of sound falling within a local neighborhood surrounding it in time and frequency. Accounting for this change in effective receptive field with spectrotemporal context improves predictions of both cortical and thalamic responses to stationary complex sounds. Although context dependence varies among neurons and across brain areas, there are strong shared qualitative characteristics. In a spectrotemporally rich soundscape, sound elements modulate neuronal responsiveness more effectively when they coincide with sounds at other frequencies, and less effectively when they are preceded by sounds at similar frequencies. This local-context-driven lability in the representation of complex sounds-a modulation of "input-specific gain" rather than "output gain"-may be a widespread motif in sensory processing.
机译:感觉神经元通常以描述感觉空间和时间敏感性的一个或多个线性加权感受野为特征。我们表明,在听觉皮层和丘脑神经元中,每个感受野元素的权重取决于在时间和频率上落入围绕它的局部邻域内的声音模式。考虑到具有光谱时态背景的有效接收场的这种变化,可以改善对皮质和丘脑对平稳复杂声音的反应的预测。尽管上下文依赖关系在神经元之间和整个大脑区域有所不同,但仍具有很强的共有定性特征。在时光谱丰富的音景中,当声音元素与其他频率的声音重合时,它们会更有效地调节神经元的响应能力,而当它们之前出现相似频率的声音时,其调节效果会更差。这种在复杂声音表示中由本地上下文驱动的不稳定性-“输入特定增益”而不是“输出增益”的调制-可能是感觉处理中的一个广泛主题。

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