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一个已识别的口胃神经节神经元的数学模型。

Mathematical model of an identified stomatogastric ganglion neuron.

作者信息

Buchholtz F, Golowasch J, Epstein I R, Marder E

机构信息

Department of Chemistry, Brandeis University, Waltham, Massachusetts 02254-9110.

出版信息

J Neurophysiol. 1992 Feb;67(2):332-40. doi: 10.1152/jn.1992.67.2.332.

Abstract
  1. The ionic currents in the lateral pyloric (LP) cell of the stomatogastric ganglion (STG) described in the preceding paper of the rock crab Cancer borealis were fit with a set of differential equations that describe their voltage, time, and Ca2+ dependence. The voltage-dependent currents modeled are a delayed rectifier-like current, id; a Ca(2+)-activated outward current, io(Ca); a transient A-like current, iA; a Ca2+ current, iCa; an inwardly rectifying current, ih; and a fast tetrodotoxin (TTX)-sensitive Na+ current, iNa. 2. A single-compartment, isopotential model of the LP cell was constructed from the six voltage-dependent currents, a voltage-independent leak current il, a Ca2+ buffering system, and the membrane capacitance. 3. The behavior of the model LP neuron was compared with that of the biological neuron by simulating physiological experiments carried out in both voltage-clamp and current-clamp modes. The model and biological neurons show similar action-potential shapes, durations, steady-state current-voltage (I-V) curves, and respond to injected current in a comparable way.
摘要
  1. 在前一篇关于北方岩蟹(Cancer borealis)的论文中描述的口胃神经节(STG)侧幽门(LP)细胞中的离子电流,用一组描述其电压、时间和Ca2+依赖性的微分方程进行拟合。所模拟的电压依赖性电流包括延迟整流样电流id;Ca(2+)激活外向电流io(Ca);瞬态A样电流iA;Ca2+电流iCa;内向整流电流ih;以及快速河豚毒素(TTX)敏感的Na+电流iNa。2. 基于六个电压依赖性电流、一个电压非依赖性漏电流il、一个Ca2+缓冲系统和膜电容构建了LP细胞的单室等电位模型。3. 通过模拟在电压钳制和电流钳制模式下进行的生理实验,将模型LP神经元的行为与生物神经元的行为进行比较。模型神经元和生物神经元表现出相似的动作电位形状、持续时间、稳态电流-电压(I-V)曲线,并且对注入电流的响应方式具有可比性。

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