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七鳃鳗脊髓神经元的突触电位和传递函数

Synaptic potentials and transfer functions of lamprey spinal neurons.

作者信息

Buchanan J T, Moore L E, Hill R, Wallén P, Grillner S

机构信息

Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77550.

出版信息

Biol Cybern. 1992;67(2):123-31. doi: 10.1007/BF00201019.

Abstract
  1. Electrotonic and chemical synaptic potentials were measured as a function of frequency of presynaptic action potentials. Over the frequency range from 0.02 to 10 Hz, the electrotonic synaptic potential was constant, while the chemical synaptic potential decreased in magnitude. Above 10 Hz, both synaptic events decreased in magnitude consistent with filtering by the dendritic structures. 2. Electrotonic synaptic transfer functions from 0.5 to 100 Hz were measured for the I1 reticulospinal Müller axon to spinal neuron electrotonic synaptic junction of the lamprey spinal cord using paired recordings from the pre-synaptic terminals and the post-synaptic neurons. In addition to this two-point synaptic transfer function, individual single point impedance functions of both the post-synaptic soma and the pre-synaptic axon terminal were measured. 3. The measured functions were interpreted with a computational model based on a three dimensional reconstruction of a Lucifer yellow filled motoneuron. Simulations of the model for a synaptic location of the I1 synapse were consistent with the measured synaptic transfer functions. 4. Synaptic potentials were simulated for inputs on dendrites near the I1 axon as well as distal dendritic regions. The high frequency filtering increased as the synaptic location was moved from the soma to the periphery, but the potential response on distal dendrites was larger than would have been predicted from the end of the equivalent cylinder of a Rall model that was used to fit soma impedance functions. 5. Electrotonic post-synaptic potentials were enhanced by the activation of a TTX-sensitive negative conductance.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 电紧张性和化学性突触电位作为突触前动作电位频率的函数进行测量。在0.02至10Hz的频率范围内,电紧张性突触电位保持恒定,而化学性突触电位的幅度减小。在10Hz以上,两种突触事件的幅度均减小,这与树突结构的滤波作用一致。2. 使用来自突触前终末和突触后神经元的配对记录,测量了七鳃鳗脊髓中I1网状脊髓Müller轴突至脊髓神经元电紧张性突触连接处从0.5至100Hz的电紧张性突触传递函数。除了这种两点突触传递函数外,还测量了突触后胞体和突触前轴突终末的单个单点阻抗函数。3. 基于用荧光黄填充的运动神经元的三维重建,用计算模型对测量的函数进行解释。该模型对I1突触突触位置的模拟与测量的突触传递函数一致。4. 模拟了I1轴突附近树突以及远端树突区域上输入的突触电位。随着突触位置从胞体移向周边,高频滤波增强,但远端树突上的电位反应比用于拟合胞体阻抗函数的Rall模型等效圆柱体末端所预测的要大。5. 电紧张性突触后电位通过TTX敏感的负电导的激活而增强。(摘要截短于250字)

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