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首页> 外文期刊>Neuron >Task difficulty and performance induce diverse adaptive patterns in gain and shape of primary auditory cortical receptive fields.
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Task difficulty and performance induce diverse adaptive patterns in gain and shape of primary auditory cortical receptive fields.

机译:任务难度和表现会诱发听觉皮层感受野的增益和形状的多种适应性模式。

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摘要

Attention is essential for navigating complex acoustic scenes, when the listener seeks to extract a foreground source while suppressing background acoustic clutter. This study explored the neural correlates of this perceptual ability by measuring rapid changes of spectrotemporal receptive fields (STRFs) in primary auditory cortex during detection of a target tone embedded in noise. Compared with responses in the passive state, STRF gain decreased during task performance in most cells. By contrast, STRF shape changes were excitatory and specific, and were strongest in cells with best frequencies near the target tone. The net effect of these adaptations was to accentuate the representation of the target tone relative to the noise by enhancing responses of near-target cells to the tone during high-signal-to-noise ratio (SNR) tasks while suppressing responses of far-from-target cells to the masking noise in low-SNR tasks. These adaptive STRF changes were largest in high-performance sessions, confirming a close correlation with behavior.
机译:当听众试图在抑制背景声杂波的同时提取前景源时,注意力对于导航复杂的声学场景至关重要。这项研究通过测量在检测到嵌入在噪声中的目标音的过程中初级听觉皮层的光谱时间感受场(STRF)的快速变化,探索了这种感知能力的神经相关性。与被动状态下的响应相比,大多数单元中的STRF增益在任务执行过程中降低。相比之下,STRF的形状变化具有兴奋性和特异性,并且在目标音调附近具有最佳频率的细胞中变化最大。这些调整的净效果是通过在高信噪比(SNR)任务期间增强近目标细胞对音调的响应,同时抑制远距离响应的噪声,从而增强了目标音相对于噪声的表示。 -在低SNR任务中将单元定位到掩蔽噪声。这些自适应STRF变化在高性能会话中最大,证实了与行为的密切相关。

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