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Quantal Characteristics of Synaptic GABA Release under Conditions of Stimulation of Single Synaptic Terminals of Cultured Cortical Cells of the Rat

机译:刺激大鼠培养的皮质细胞单个突触末端条件下突触GABA释放的量子特征

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摘要

We studied evoked inhibitory postsynaptic currents (eIPSC) using local electrical stimulation of single presynaptic terminals of cultured rat neocortical neurons. According to pharmacological and kinetic properties, these currents were qualified as GABAA-activated. Using autocorrelation analysis of distributions of the eIPSC amplitudes, which were in all cases polymodal, we examined quantal characteristics of the above eIPSC. These results were compared with the values of quantal parameters (N, p, Q, and m) of the current families obtained using approximation by binomial distribution. Amplitude histograms of spontaneous miniature IPSC recorded under conditions of the minimum quantal release of the neurotransmitter were normal (close to Gaussian) with the mode within a 10 pA range, which is very close to analogous parameters calculated using autocorrelation and binomial techniques.
机译:我们使用培养的大鼠新皮层神经元的单个突触前末端的局部电刺激研究了诱发的抑制性突触后电流(eIPSC)。根据药理和动力学性质,这些电流被认为是GABAA激活的。使用eIPSC振幅分布的自相关分析(在所有情况下均为多峰),我们检查了上述eIPSC的量化特征。将这些结果与使用二项式分布近似得到的当前族的数量参数(N,p,Q和m)的值进行比较。在神经递质的最小定量释放条件下记录的自发微型IPSC的振幅直方图在10 pA范围内是正常的(接近高斯),非常接近使用自相关和二项式技术计算的类似参数。

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