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Electrophysiological properties of rat spinal dorsal horn neurones in vitro: calcium-dependent action potentials.

机译:大鼠脊髓背角神经元的体外电生理特性:钙依赖的动作电位。

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摘要

1. The electrophysiological properties of dorsal horn neurones have been investigated in the immature rat in vitro spinal cord slice preparation. 2. Intracellular recordings from dorsal horn neurones show that direct or orthodromic stimulation generates action potentials followed by a brief after-hyperpolarization. Synaptic potentials were elicited by the activation of primary afferent fibres in the dorsal root. 3. Input resistance for dorsal horn neurones ranged from 48 to 267 M omega, and the membrane time constant was in the range of 4-19 ms. 4. In response to strong depolarizing currents dorsal horn neurones perfused with TTX and TEA frequently exhibit a slow regenerative depolarizing potential followed by a slow after-hyperpolarization. The depolarizing potential probably results from an influx of Ca. It is blocked by low concentration Ca, Co or Mn, and enhanced by high levels of extracellular Ca. 5. There is, in addition, a low-threshold Ca-dependent response which is activated at membrane potentials more negative than -65 mV and has a maximum rate of rise at the polarization level of about -80 mV. 6. The addition of Ba or TEA to the perfusing medium provided support for the Ca-dependence of the low- and high-threshold responses, and the lack of fast inactivation of the high-threshold Ca potential.
机译:1.已在未成熟大鼠的体外脊髓切片制备中研究了背角神经元的电生理特性。 2.背角神经元的细胞内记录显示,直接刺激或矫正刺激会产生动作电位,随后出现短暂的超极化。突触电位是通过激活背根中的初级传入纤维引起的。 3.背角神经元的输入电阻范围为48至267 MΩ,膜时间常数为4-19 ms。 4.响应强去极化电流,用TTX和TEA灌注的背角神经元经常表现出缓慢的再生去极化电势,随后缓慢的超极化后。去极化电位可能是由于Ca的流入。它被低浓度的Ca,Co或Mn阻断,并被高水平的细胞外Ca增强。 5.此外,还有一个低阈值的Ca依赖性响应,该响应在比-65 mV负的膜电势处被激活,并且在极化水平约为-80 mV时具有最大的上升速率。 6.向灌注介质中添加Ba或TEA为低阈值和高阈值响应的Ca依赖性以及高阈值Ca电位的快速失活提供了支持。

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