首页> 美国卫生研究院文献>The Journal of Neuroscience >Synaptic Mechanisms Underlying Functional Dichotomy between Intrinsic-Bursting and Regular-Spiking Neurons in Auditory Cortical Layer 5
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Synaptic Mechanisms Underlying Functional Dichotomy between Intrinsic-Bursting and Regular-Spiking Neurons in Auditory Cortical Layer 5

机译:听觉皮层第5层内在突触和规则突触神经元之间功能二分法的突触机制。

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摘要

Corticofugal projections from the primary auditory cortex (A1) have been shown to play a role in modulating subcortical processing. However, functional properties of the corticofugal neurons and their synaptic circuitry mechanisms remain unclear. In this study, we performed in vivo whole-cell recordings from layer 5 (L5) pyramidal neurons in the rat A1 and found two distinct neuronal classes according to their functional properties. Intrinsic-bursting (IB) neurons, the L5 corticofugal neurons, exhibited early and rather unselective spike responses to a wide range of frequencies. The exceptionally broad spectral tuning of IB neurons was attributable to their broad excitatory inputs with long temporal durations and inhibitory inputs being more narrowly tuned than excitatory inputs. This uncommon pattern of excitatory–inhibitory interplay was attributed initially to a broad thalamocortical convergence onto IB neurons, which also receive temporally prolonged intracortical excitatory input as well as feedforward inhibitory input at least partially from more narrowly tuned fast-spiking inhibitory neurons. In contrast, regular-spiking neurons, which are mainly corticocortical, exhibited sharp frequency tuning similar to L4 pyramidal cells, underlying which are well-matched purely intracortical excitation and inhibition. The functional dichotomy among L5 pyramidal neurons suggests two distinct processing streams. The spectrally and temporally broad synaptic integration in IB neurons may ensure robust feedback signals to facilitate subcortical function and plasticity in a general manner.
机译:初级听觉皮层(A1)的皮质小管投射已显示在调节皮层下处理中起作用。然而,尚不了解皮质皮质神经元的功能特性及其突触电路机制。在这项研究中,我们从大鼠A1的第5层(L5)锥体神经元进行了体内全细胞记录,并根据其功能特性发现了两个不同的神经元类别。内爆(IB)神经元,即L5皮质ugul神经元,表现出早期和非选择性的尖峰响应对广泛的频率。 IB神经元异常宽的光谱调谐归因于其广泛的兴奋性输入,持续时间长,抑制性输入的调节范围比兴奋性输入更窄。这种兴奋性-抑制性相互作用的罕见模式最初归因于广泛的丘脑皮质向IB神经元的汇聚,该神经元也暂时接受了皮质内兴奋性输入的时间延长以及前馈抑制输入,至少部分来自更窄调的快速掺入抑制神经元。相反,主要为皮层皮层的规则加标神经元表现出与L4锥体细胞相似的急剧频率调谐,其下层是完全匹配的纯皮层内激发和抑制。 L5锥体神经元之间的功能二分法表明两个不同的处理流。 IB神经元的频谱和时间上广泛的突触整合可以确保可靠的反馈信号,以一般方式促进皮层下功能和可塑性。

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