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Two central pattern generators from the crab, Cancer borealis, respond robustly and differentially to extreme extracellular pH

机译:来自螃蟹的两个中央模式发生器,北极巨蟹,对极端的细胞外pH有强烈的反应和不同的反应

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摘要

The activity of neuronal circuits depends on the properties of the constituent neurons and their underlying synaptic and intrinsic currents. We describe the effects of extreme changes in extracellular pH – from pH 5.5 to 10.4 – on two central pattern generating networks, the stomatogastric and cardiac ganglia of the crab, Cancer borealis. Given that the physiological properties of ion channels are known to be sensitive to pH within the range tested, it is surprising that these rhythms generally remained robust from pH 6.1 to pH 8.8. The pH sensitivity of these rhythms was highly variable between animals and, unexpectedly, between ganglia. Animal-to-animal variability was likely a consequence of similar network performance arising from variable sets of underlying conductances. Together, these results illustrate the potential difficulty in generalizing the effects of environmental perturbation across circuits, even within the same animal.
机译:神经回路的活动取决于组成神经元的性质及其潜在的突触和固有电流。我们描述了细胞外pH值的极端变化-从pH 5.5到10.4-对两个中心模式生成网络(蟹的胃胃和心脏神经节)的影响。考虑到已知离子通道的生理特性对测试范围内的pH敏感,令人惊讶的是,这些节奏通常在pH 6.1至pH 8.8范围内保持稳定。这些节律的pH敏感性在动物之间以及神经节之间意外地变化很大。动物对动物的变异性可能是由于潜在电导的可变集合引起的类似网络性能的结果。在一起,这些结果说明了在整个电路中,甚至在同一只动物中,普遍存在环境扰动影响的潜在困难。

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