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Intrinsic cellular currents and the temporal precision of EPSP–action potential coupling in CA1 pyramidal cells

机译:CA1锥体细胞内在细胞电流和EPSP-动作电位耦合的时间精度

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摘要

We examined relations between cellular currents activated near firing threshold and the initiation of action potentials by excitatory postsynaptic potentials (EPSPs) in CA1 pyramidal cells in vitro. Small voltage steps elicited sequences of inward–outward currents at hyperpolarized potentials, but evoked largely inward currents at near threshold potentials. Similarly small EPSP-like waveforms initiated largely inward currents while larger stimuli evoked sequences of inward followed by outward currents. Shorter rise times of EPSP-like waveforms accentuated a transient component of inward currents. Voltage clamp data were consistent with the voltage dependence of current clamp responses to injection of EPSP shaped waveforms. Small events were prolonged at subthreshold potentials and could elicit action potentials at long latencies while responses to larger EPSP waveforms showed less voltage dependence and tended to induce spikes at shorter, less variable latencies. The precision of action potentials initiated by white noise depended also on stimulus amplitude. High variance stimuli induced firing with high precision, while the timing of spikes induced by lower variance signals was more variable between trials. In voltage clamp records, high variance noise commands induced sequences of inward followed by outward currents, while lower variance versions of the same commands elicited purely inward currents. These data suggest that larger synaptic stimuli recruit outward as well as inward currents. The resulting inward–outward current sequences enhance the temporal precision of EPSP–spike coupling. Thus, CA1 pyramidal cells initiate action potentials with different temporal precision, depending on stimulus properties.
机译:我们检查了在CA1锥体细胞中在激发阈值附近激活的细胞电流与由兴奋性突触后电位(EPSPs)引发的动作电位之间的关系。较小的电压阶跃会在超极化电势下引起向内向外的电流序列,但在接近阈值电势下会引起大量向内电流。类似地,类似EPSP的小波形在很大程度上引发了向内的电流,而较大的刺激诱发了向内的序列,随后是向外的电流。类EPSP波形的上升时间较短,加剧了内向电流的瞬态分量。电压钳位数据与电流钳位响应对EPSP波形的注入的电压依赖性一致。小事件在低于阈值的电位下会延长,并可能在较长的等待时间上引发动作电位,而对较大的EPSP波形的响应则显示出较小的电压依赖性,并且倾向于在较短的,变化较小的等待时间上引起尖峰。由白噪声引发的动作电位的精度也取决于刺激幅度。在试验之间,高方差刺激诱导的射击具有较高的精度,而较低方差信号引起的尖峰的定时则更具可变性。在电压钳记录中,高方差噪声命令会引起向内的序列,随后是向外电流,而同一命令的低方差版本会引起纯向内电流。这些数据表明较大的突触刺激向内和向内流动。由此产生的内向外电流序列增强了EPSP峰值耦合的时间精度。因此,取决于刺激特性,CA1锥体细胞以不同的时间精度启动动作电位。

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