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Task-dependent modulation of medial geniculate body is behaviorally relevant for speech recognition

机译:膝部膝状体的任务依赖型调节与语音识别在行为上相关

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Recent work has shown that responses in first-order sensory thalamic nuclei are modulated by cortical areas [1-5]. However, the functional role of such corticothalamic modulation and its relevance for human perception is still unclear. Here, we show in two functional magnetic resonance imaging (fMRI) studies that the neuronal response in the first-order auditory thalamus, the medial geniculate body (MGB), is increased when rapidly varying spectrotemporal features of speech sounds are processed, as compared to processing slowly varying spectrotemporal features of the same sounds. The strength of this task-dependent modulation is positively correlated with the speech recognition scores of individual subjects. These results show that task-dependent modulation of the MGB serves the processing of specific features of speech sounds and is behaviorally relevant for speech recognition. Our findings suggest that the first-order auditory thalamus is not simply a nonspecific gatekeeper controlled by attention [6]. Together with studies in nonhuman mammals [4, 5], our findings imply a mechanism in which the first-order auditory thalamus, possibly by corticothalamic modulation, reacts adaptively to features of sensory input.
机译:最近的工作表明,一阶感觉丘脑核的反应受到皮层区域的调节[1-5]。然而,尚不清楚这种皮层丘脑调制的功能作用及其与人类感知的相关性。在这里,我们在两项功能磁共振成像(fMRI)研究中显示,与快速变化的语音时空特征相比,一阶听觉丘脑内侧膝状体(MGB)的神经元反应与处理相同声音的缓慢变化的光谱时间特征。这种依赖于任务的调制的强度与单个对象的语音识别分数呈正相关。这些结果表明,MGB的任务依赖型调制可处理语音的特定特征,并且在行为上与语音识别相关。我们的发现表明,一阶听觉丘脑不仅仅是一个由注意力控制的非特异性网守[6]。连同在非人类哺乳动物中的研究[4,5],我们的发现暗示一种机制,其中一级听觉丘脑(可能是通过皮质丘脑调节)对感觉输入的特征做出了自适应反应。

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