Neurons are input-output (I/O) devices-they receive synaptic inputs from other neurons, integrate those inputs with their intrinsic properties, and generate action potentials as outputs. To understand this fundamental process, we studied the interaction between synaptic inputs and intrinsic properties using whole-cell recordings from V1 neurons of awake, fixating macaque monkeys. Our measurements during spontaneous activity and visual stimulation reveal an intrinsic voltage-gated conductance that profoundly alters the integrative properties and visual responses of cortical neurons. This voltage-gated conductance increases neuronal gain and selectivity with subthreshold depolarization and linearizes the relationship between synaptic input and neural output. This intrinsic conductance is found in layer 2/3 V1 neurons of awake macaques, anesthetized mice, and acute brain slices. These results demonstrate that intrinsic conductances play an essential role in shaping the I/O relationship of cortical neurons and must be taken into account in future models of cortical computations.
Voltage-Gated Intrinsic Conductances Shape the Input-Output Relationship of Cortical Neurons in Behaving Primate V1.
电压门控固有电导塑造了行为灵长类动物 V1 皮层神经元的输入-输出关系
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作者:Li Baowang, Routh Brandy N, Johnston Daniel, Seidemann Eyal, Priebe Nicholas J
| 期刊: | Neuron | 影响因子: | 15.000 |
| 时间: | 2020 | 起止号: | 2020 Jul 8; 107(1):185-196 |
| doi: | 10.1016/j.neuron.2020.04.001 | 种属: | Primate |
| 研究方向: | 神经科学 | ||
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