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小龙虾中已鉴定肌肉纤维生长过程中的电特性和量子电流变化。

Changes in electrical properties and quantal current during growth of identified muscle fibres in the crayfish.

作者信息

Lnenicka G A, Mellon D

出版信息

J Physiol. 1983 Dec;345:261-84. doi: 10.1113/jphysiol.1983.sp014977.

Abstract

The muscle fibre electrical properties, miniature excitatory junctional current (m.e.j.c.) and miniature excitatory junctional potential (m.e.j.p.) were studied during growth of an identified crayfish muscle fibre from a diameter of 20 to 400 microns. The specific membrane resistance (Rm), and the specific internal resistance (Ri), of the muscle fibre were independent of fibre diameter (d) during growth. The current-voltage relation has a similar shape in large and small fibres, indicating that voltage dependence of Rm does not change during growth. The input resistance (R0) was approximately proportional to d-1.5, as predicted theoretically. The specific membrane capacitance (Cm) and the membrane time constant (Tm) increased linearly with fibre diameter, apparently as a result of the contribution of the tubular capacitance to Cm. The decrease in R0 and the increase in Tm should have resulted in a 90-fold decrease in m.e.j.p. amplitude during growth of the fibre from a diameter of 20 to 240 microns. However, m.e.j.p. amplitude was found to decrease only 21-fold. This discrepancy was shown to result from an increase in m.e.j.c. amplitude and duration during growth. There was 2.9-fold increase in m.e.j.c. amplitude and a 2.7-fold increase in m.e.j.c. duration over the range of muscle fibre growth studied. This increase in the m.e.j.c. apparently results from an increase in the magnitude and duration of the synaptic conductance change produced by a quantum of transmitter. Throughout the range of muscle fibre diameters studied, the muscle fibre effective input impedance for the m.e.j.c. was 17-19% of R0. This is due to the relatively large Cm and the short duration of the m.e.j.c.

摘要

在一只已识别的小龙虾肌肉纤维从直径20微米生长到400微米的过程中,研究了其肌肉纤维电特性、微小兴奋性接头电流(m.e.j.c.)和微小兴奋性接头电位(m.e.j.p.)。在生长过程中,肌肉纤维的比膜电阻(Rm)和比内阻(Ri)与纤维直径(d)无关。大纤维和小纤维的电流-电压关系形状相似,表明Rm的电压依赖性在生长过程中不变。输入电阻(R0)与d -1.5大致成正比,这与理论预测相符。比膜电容(Cm)和膜时间常数(Tm)随纤维直径线性增加,显然这是由于管状电容对Cm的贡献。在纤维从直径20微米生长到240微米的过程中,R0的降低和Tm的增加本应导致m.e.j.p.幅度下降90倍。然而,发现m.e.j.p.幅度仅下降21倍。这种差异表明是由于生长过程中m.e.j.c.幅度和持续时间的增加。在所研究的肌肉纤维生长范围内,m.e.j.c.幅度增加了2.9倍,m.e.j.c.持续时间增加了2.7倍。m.e.j.c.的这种增加显然是由于一个递质量子产生的突触电导变化的幅度和持续时间增加所致。在所研究的整个肌肉纤维直径范围内,肌肉纤维对m.e.j.c.的有效输入阻抗为R0的17 - 19%。这是由于相对较大的Cm和m.e.j.c.的持续时间较短。

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