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Interference between field excitatory postsynaptic potentials and simultaneously recorded chronoamperometric L-glutamate currents in mouse hippocampal slices

机译:小鼠海马切片中场兴奋性突触后突触电位与同时记录的计时电流L-谷氨酸电流之间的干扰

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摘要

Herewe report on an unexpected interaction between field excitatory postsynaptic potentials (fEPSPs) and simultaneously recorded chronoamperometric L-glutamate currents based on time-resolved (200 Hz) amperometry in mouse hippocampal slices. It was found that electric stimuli and evoked fEPSPs induced an artifact on amperometric currents due to an unintentionally formed junction between the circuits of the amperometric and fEPSP measurements. The origin of the artifact was investigated using circuit simulation. To extract a faradaic signal from the observed currents, we sampled currents when the artifact decayed, i.e., 450 ms after the stimulation. The reliability of the extracted signal was examined through the manipulation of L-glutamate release probability.
机译:本文报道了基于时间分辨(200 Hz)安培法的小鼠海马切片中场兴奋性突触后电位(fEPSPs)与同时记录的计时电流L-谷氨酸电流之间的意外相互作用。已经发现,由于在电流测量法和fEPSP测量的电路之间无意形成的结,电刺激和诱发的fEPSP引起了电流法电流的伪像。使用电路仿真研究了伪像的起源。为了从观察到的电流中提取法拉第信号,我们在伪像衰减时(即刺激后450毫秒)采样电流。通过操纵L-谷氨酸释放概率来检查提取信号的可靠性。

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