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An Input-Representing Interneuron Regulates Spike Timing and Thereby Phase Switching in a Motor Network

机译:代表输入的神经元调节电机网络中的尖峰定时并由此进行相位切换

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摘要

Despite the importance of spike-timing regulation in network functioning, little is known about this regulation at the cellular level. In the Aplysia feeding network, we show that interneuron B65 regulates the timing of the spike initiation of phase-switch neurons B64 and cerebral-buccal interneuron-5/6 (CBI-5/6), and thereby determines the identity of the neuron that acts as a protraction terminator. Previous work showed that B64 begins to fire before the end of protraction phase and terminates protraction in CBI-2-elicited ingestive, but not in CBI-2-elicited egestive programs, thus indicating that the spike timing and phase-switching function of B64 depend on the type of the central pattern generator (CPG)-elicited response rather than on the input used to activate the CPG. Here, we find that CBI-5/6 is a protraction terminator in egestive programs elicited by the esophageal nerve (EN), but not by CBI-2, thus indicating that, in contrast to B64, the spike timing and protraction-terminating function of CBI-5/6 depends on the input to the CPG rather than the response type. Interestingly, B65 activity also depends on the input in that B65 is highly active in EN-elicited programs, but not in CBI-2-elicited programs independent of whether the programs are ingestive or egestive. Notably, during EN-elicited egestive programs, hyperpolarization of B65 delays the onset of CBI-5/6 firing, whereas in CBI-2-elicited ingestive programs, B65 stimulation simultaneously advances CBI-5/6 firing and delays B64 firing, thereby substituting CBI-5/6 for B64 as the protraction terminator. Thus, we identified a neural mechanism that, in an input-dependent manner, regulates spike timing and thereby the functional role of specific neurons.
机译:尽管尖峰定时调节在网络功能中很重要,但在细胞水平上对该调节知之甚少。在Aplysia喂食网络中,我们显示中间神经元B65调节相变神经元B64和脑颊中间神经元5/6(CBI-5 / 6)的尖峰启动时间,从而确定神经元的身份充当持久终结者。先前的工作表明,B64在延长阶段结束之前开始发射,并在CBI-2引起的摄食程序中终止延长,但是在CBI-2引起的摄食程序中没有结束,因此表明B64的尖峰定时和相切换功能取决于取决于中央模式发生器(CPG)引起的响应的类型,而不是取决于用于激活CPG的输入。在这里,我们发现CBI-5 / 6是食管神经(EN)引发的节拍程序中的延缓终止剂,而不是CBI-2引发的延缓终止剂,因此,与B64相比,它表明突波时机和延缓终止功能CBI-5 / 6的有效期取决于CPG的输入,而不是响应类型。有趣的是,B65的活动还取决于输入,因为B65在EN引发的程序中高度活跃,但在CBI-2引发的程序中则不活跃,而与该程序是摄取型还是自发性无关。值得注意的是,在EN引起的节律性程序中,B65的超极化延迟了CBI-5 / 6的发作,而在CBI-2的摄食性程序中,B65刺激同时使CBI-5 / 6的发作和延迟了B64的发作,从而代替了CBI-5 / 6用于B64作为延长终止剂。因此,我们确定了一种神经机制,该机制以输入依赖的方式调节尖峰时间,从而调节特定神经元的功能。

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