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Electrotonic coupling in internally perfused crayfish segmented axons.

机译:内部灌注小龙虾分段轴突的电声耦合。

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摘要

We have developed a technique for cannulation and internal perfusion of crayfish segmented lateral axons. Experiments on perfused and non-perfused axons lead to the following conclusions: 1. Internally perfused segmented axons behave very similarly to non-perfused axons. 2. The axial electrical resistance of the junctional region is almost as low as a comparable segment of axon. 3. Neither intracellular Ca2+ nor H+ is effective in disrupting the intercellular communication pathway in perfused axons. On the basis of these findings we have formulated a hypothesis for cellular control of intercellular coupling based on the existence of a soluble intermediate for Ca2+ or H+-induced uncoupling. This hypothesis is consistent with data from both internally perfused and non-perfused axons.
机译:我们已经开发了一种技术,用于小龙虾分段外侧轴突的插管和内部灌注。对灌注和非灌注轴突的实验得出以下结论:1.内部灌注的分段轴突的行为与非灌注轴突的行为非常相似。 2.接合区域的轴向电阻几乎与轴突的可比段一样低。 3.细胞内的Ca2 +和H +都不能有效地破坏灌注轴突中的细胞间通讯途径。基于这些发现,我们基于对Ca2 +或H +诱导的解偶联的可溶性中间体的存在,提出了细胞间偶联控制的假说。该假设与内部灌注轴突和非灌注轴突的数据一致。

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