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Neuronal Diversity: Categorizing Types of Neurons: Cell-type-specific resonances shape the responses of striatal neurons to synaptic input

机译:神经元多样性:分类神经元类型:特定于细胞类型的共振影响纹状体神经元对突触输入的反应

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摘要

Neurons respond to synaptic inputs in cell-type-specific ways. Each neuron type may thus respond uniquely to shared patterns of synaptic input. We applied statistically identical barrages of artificial synaptic inputs to four striatal cell types to assess differences in their responses to a realistic input pattern. Each interneuron type fired in phase with a specific input-frequency component. The fast-spiking interneuron fired in relation to the gamma-band (and higher) frequencies, the low-threshold spike interneuron to the beta-band frequencies, and the cholinergic neurons to the delta-band frequencies. Low-threshold spiking and cholinergic interneurons showed input impedance resonances at frequencies matching their spiking resonances. Fast-spiking interneurons showed resonance of input impedance but at lower than gamma frequencies. The spiny projection neuron's frequency preference did not have a fixed frequency but instead tracked its own firing rate. Spiny cells showed no input impedance resonance. Striatal interneurons are each tuned to a specific frequency band corresponding to the major frequency components of local field potentials. Their influence in the circuit may fluctuate along with the contribution of that frequency band to the input. In contrast, spiny neurons may tune to any of the frequency bands by a change in firing rate.
机译:神经元以特定于细胞类型的方式响应突触输入。因此,每种神经元类型可以对突触输入的共享模式做出唯一响应。我们将统计上相同的人工突触输入弹幕应用于四种纹状体细胞类型,以评估它们对真实输入模式的反应差异。每个中间神经元类型与特定的输入频率分量同相发射。相对于γ波段(及更高)频率发射快速爆发的中间神经元,向β波段频率激发低阈值尖峰中间神经元,向δ波段频率激发胆碱能神经元。低阈值尖峰和胆碱能中枢神经在与其尖峰共振相匹配的频率处显示输入阻抗共振。快速爆发的中间神经元显示出输入阻抗的共振,但低于伽玛频率。棘突投射神经元的频率偏好不具有固定频率,而是跟踪其自身的发射速率。棘细胞未显示输入阻抗共振。每个纹状体中间神经元都调谐到一个特定的频带,该频带对应于局部场电势的主要频率分量。它们在电路中的影响可能会随着该频带对输入的影响而波动。相反,多刺的神经元可通过激发速率的改变而调谐到任何频带。

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