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Subthreshold and near-threshold membrane currents in lobster stretch receptor neurones.

机译:龙虾拉伸受体神经元中的亚阈值和近阈值膜电流。

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摘要

1. The ion currents in the slowly and rapidly adapting stretch receptor neurone of lobster were investigated with respect to their nature and stationary kinetics in sub- and near-threshold voltage regions using electrophysiological and pharmacological techniques. 2. In both neurones the following currents were identified: (a) a tetrodotoxin-sensitive Na current, (b) a tetraethylammonium and 4-aminopyridine-sensitive K current, (c) a Co (or Mn)-sensitive Ca-dependent K current, (d) an ouabain-sensitive pump current and (e) a remaining leak current carried mainly by Na, K and Cl. 3. In suprathreshold voltage regions the balance between the individual membrane currents leads to the formation of a stationary negative conductance (negative slope in the voltage dependence of the ionic current) in the slowly, but not in the rapidly adapting cell. 4. These observations are compatible with the fact that during prolonged suprathreshold stimulation a stationary low frequency impulse during is possible in the slowly adapting cell, whereas in the rapidly adapting cell it is not.
机译:1.使用电生理学和药理学技术,研究了在慢速和快速适应性的龙虾拉伸受体神经元中的离子电流,就其性质以及在亚阈值电压和接近阈值电压区域的稳态动力学进行了研究。 2.在两个神经元中均确定了以下电流:(a)对河豚毒素敏感的Na电流,(b)对四乙铵和4-氨基吡啶敏感的K电流,(c)对Co(或Mn)敏感的Ca依赖性K (d)哇巴因敏感的泵浦电流,以及(e)主要由Na,K和Cl携带的剩余泄漏电流。 3.在阈值以上的电压区域中,各个膜电流之间的平衡会导致在缓慢适应的池中形成稳定的负电导(离子电流对电压的依赖性为负斜率),而不是在快速适应的池中形成。 4.这些观察结果与以下事实相吻合:在长期超阈值刺激期间,缓慢适应的细胞可能会发生平稳的低频冲动,而在快速适应细胞中则不可能。

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