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Gated currents generate single spike activity in amacrine cells of the tiger salamander retina.

机译:门控电流在老虎sal视网膜的无长突细胞中产生单峰活动。

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摘要

Amacrine cells form the neural networks mediating the second level of lateral interactions in the vertebrate retina. Members of a prominent class of amacrine cells, found in most vertebrates, respond at both the onset and termination of steps of illumination with a single, large transient depolarization. We show here how specific relationships between membrane currents control this single spike activity. Using whole-cell patch clamp on living retinal slices, we studied the membrane currents in amacrine cells. The currents elicited by depolarizing voltage steps could be separated into three main ionic components: a transient inward voltage-gated sodium current, a relatively small sustained inward voltage-gated calcium current, and a calcium-dependent outward current. A specific relationship between the sodium and potassium current alone appears to preclude repetitive spike activity. Potassium current is activated at potentials positive to -20 mV, but the sodium inactivation, between -60 and -20 mV, does not intersect potassium activation. Therefore, a steady depolarizing current step elicits an initial spike but then the membrane cannot be sufficiently hyperpolarized by potassium current to remove sodium inactivation and the cell remains refractory.
机译:无长突细胞形成介导脊椎动物视网膜中第二水平的侧向相互作用的神经网络。在大多数脊椎动物中发现的无色无精子细胞的主要类别的成员,在照射步骤的开始和结束时均具有单个大的瞬时去极化作用。我们在这里展示了膜电流之间的特定关系如何控制这种单峰活动。使用全细胞膜片钳在活的视网膜切片上,我们研究了无长突细胞的膜电流。由去极化电压阶跃引起的电流可以分为三个主要的离子成分:瞬态向内电压门控钠电流,相对较小的持续向内电压门控钙电流和与钙有关的向外电流。仅钠电流和钾电流之间的特定关系似乎排除了重复的尖峰活性。钾电流在-20 mV的正电势下被激活,但是在-60至-20 mV之间的钠失活不会与钾的激活相交。因此,稳定的去极化电流步骤会引发初始尖峰,但随后钾电流无法使膜充分超极化以消除钠的失活,并且细胞保持难治性。

著录项

  • 作者

    Barnes, S; Werblin, F;

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  • 年度 1986
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  • 原文格式 PDF
  • 正文语种 en
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