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首页> 外文期刊>Nature neuroscience >Differential neural coding of acoustic flutter within primate auditory cortex.
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Differential neural coding of acoustic flutter within primate auditory cortex.

机译:灵长类听觉皮层内声扑的差分神经编码。

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A sequence of acoustic events is perceived either as one continuous sound or as a stream of temporally discrete sounds (acoustic flutter), depending on the rate at which the acoustic events repeat. Acoustic flutter is perceived at repetition rates near or below the lower limit for perceiving pitch, and is akin to the discrete percepts of visual flicker and tactile flutter caused by the slow repetition of sensory stimulation. It has been shown that slowly repeating acoustic events are represented explicitly by stimulus-synchronized neuronal firing patterns in primary auditory cortex (AI). Here we show that a second neural code for acoustic flutter exists in the auditory cortex of marmoset monkeys (Callithrix jacchus), in which the firing rate of a neuron is a monotonic function of an acoustic event's repetition rate. Whereas many neurons in AI encode acoustic flutter using a dual temporal/rate representation, we find that neurons in cortical fields rostral to AI predominantly use a monotonic rate code and lack stimulus-synchronized discharges. These findings indicate that the neural representation of acoustic flutter is transformed along the caudal-to-rostral axis of auditory cortex.
机译:取决于声音事件重复的速率,一系列声音事件可以感知为一个连续的声音,也可以看作是一串时间上离散的声音(声学颤动)。以接近或低于感知音调的下限的重复速率感知到声音的颤动,并且类似于由感觉刺激的缓慢重复引起的视觉颤动和触觉颤动的离散感知。已经显示,在原发性听觉皮层(AI)中,与刺激同步的神经元放电模式明确表示了缓慢重复的声音事件。在这里,我们显示了mar猴的听觉皮层中存在第二个用于神经颤动的神经代码,其中神经元的发声速率是声事件重复率的单调函数。尽管AI中的许多神经元使用时态/速率双重表示来编码声扑,但我们发现皮质区域内的神经元主要使用AI单调速率代码,并且缺乏刺激同步放电。这些发现表明,听觉颤动的神经表示沿着听觉皮层的尾到头到轴转换。

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