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Electrotonic measurements by electric field-induced polarization in neurons: theory and experimental estimation.

机译:电场诱导神经元极化的电声测量:理论和实验估计。

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摘要

We present a theory for estimation of the dendritic electrotonic length constant and the membrane time constant from the transmembrane potential (TMP) induced by an applied electric field. The theory is adapted to morphologically defined neurons with homogeneous passive electric properties. Frequency characteristics and transients at the onset and offset of the DC field are considered. Two relations are useful for estimating the electrotonic parameters: 1) steady-state polarization versus the dendritic electrotonic length constant; 2) membrane time constant versus length constant. These relations are monotonic and may provide a unique estimate of the electrotonic parameters for 3D-reconstructed neurons. Equivalent tip-to-tip electrotonic length of the dendritic tree was estimated by measuring the equalization time of the field-induced TMP. For 11 turtle spinal motoneurons, the electrotonic length from tip to tip of the dendrites was in the range of 1-2.5 lambda, whereas classical estimation using injection of current pulses gave an average dendrite length of 0.9-1.1 lambda. For seven ventral horn interneurons, the estimates were 0.7-2.6 lambda and 0.6-0.9 lambda, respectively. The measurements of the field-induced polarization promise to be a useful addition to the conventional methods using microelectrode stimulation.
机译:我们提出了一种理论,用于从由施加电场引起的跨膜电势(TMP)估计树突状电声长度常数和膜时间常数。该理论适用于具有均一的被动电特性的形态学定义的神经元。考虑直流场的开始和偏移处的频率特性和瞬变。估计电渗参数有两个关系:1)稳态极化与树枝状电渗长度常数。 2)膜时间常数与长度常数。这些关系是单调的,并且可以为3D重建的神经元提供电声参数的唯一估计。通过测量场致TMP的均衡时间,估计树状树的等效尖端间电声长度。对于11个乌龟脊髓运动神经元,从树突尖端到尖端的电声长度在1-2.5λ的范围内,而使用电流脉冲注入的经典估计得出的平均树突长度为0.9-1.1λ。对于七个腹角内神经元,估计分别为0.7-2.6λ和0.6-0.9λ。场致极化的测量有望成为使用微电极刺激的常规方法的有用补充。

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