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Locust wing stretch receptor adaptation and recovery from adaptation

机译:蝗虫翅拉伸受体的适应和适应恢复

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Adaptation of action potential frequency is a common feature of neurons from various parts of the nervous system. Adaptation is thought to contribute to information coding, integration, input filtering and saving of metabolic resources. Despite intensive investigation, the kinetics of adaptation and recovery from adaptation are not fully described. The locust forewing stretch receptor (fSR) was used to investigate the kinetics of adaptation and recovery from adaptation in response to wing elevation. We have found that adaptation can be well described by a sum of two exponential decays with time constants 5.04 ± 0.6 s and 24.86 ± 2.45 s. The dependence of recovery on adaptation time was biphasic in 70% of the fSRs investigated. In these fSRs, the break point (10.54 ± 1.09 s) separates the initial linear phase from the following exponential one. These findings suggest that at least two mechanisms with different kinetics are involved in the adaptation of locust wing stretch receptor.
机译:动作电位频率的适应是来自神经系统各个部分的神经元的共同特征。适应被认为有助于信息编码,整合,输入过滤和节省代谢资源。尽管进行了深入的研究,但尚未充分描述适应的动力学和从适应中恢复的动力学。蝗虫前伸拉伸受体(fSR)用于研究适应的动力学和对机翼仰角响应的适应恢复。我们发现,可以通过两个指数衰减的总和很好地描述自适应,时间常数为5.04±0.6 s和24.86±2.45 s。在70%的fSR中,恢复对适应时间的依赖性是双相的。在这些fSR中,断点(10.54±1.09 s)将初始线性相位与随后的指数相位分开。这些发现表明,至少两种具有不同动力学的机制参与了蝗虫翅膀伸展受体的适应。

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