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Amplitude fluctuations in small EPSPs recorded from CA1 pyramidal cells in the guinea pig hippocampal slice

机译:豚鼠海马切片CA1锥体细胞记录的小EPSP的幅度波动

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摘要

EPSPs have been evoked in CA1 pyramidal cells by (1) activation of single CA3 neurons (unitary EPSPs), and (2) low-intensity stimuli to the CA1 stratum radiatum. Five unitary EPSPs were obtained; their mean peak amplitudes ranged from 85 to 275 microV and 3 of the 5 showed fluctuations in amplitude that were too great to be attributed to baseline noise. After subtraction of the variance due to the noise, these EPSPs had coefficients of variation much higher than those reported for variability in the quantal EPSP in other preparations. These results suggest that intermittent transmitter release is a major cause of EPSP amplitude fluctuation at this synapse. A noise deconvolution technique based on a nonrestrictive model of transmitter release was applied to the EPSPs obtained in this study. For 2 of the EPSPs evoked by stratum radiatum stimulation, the amplitudes fluctuated between discrete values that were sufficiently separated with respect to the noise to be resolved by the deconvolution procedure. Quantal increments of 224 and 193 microV were determined for the 2 EPSPs.
机译:通过(1)激活单个CA3神经元(单一EPSP)和(2)对CA1层放射线的低强度刺激,在CA1锥体细胞中诱发了EPSP。获得了五个单一的EPSP;它们的平均峰值幅度在85到275 microV之间,五分之三的幅度波动太大,不能归因于基线噪声。在减去噪声引起的方差后,这些EPSP的变异系数远高于其他制备方法中定量EPSP的变异系数。这些结果表明间歇性发射器释放是此突触处EPSP幅度波动的主要原因。本研究中获得的基于EPSP的非限制性模型的噪声反卷积技术被应用到了EPSP中。对于由地层放射线刺激引起的两个EPSP,幅度在离散值之间波动,离散值相对于要通过反卷积过程解析的噪声而言是足够分离的。对于2个EPSP,确定了224和193 microV的量子增量。

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