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State Dependence of Spike Timing and Neuronal Function in a Motor Pattern Generating Network

机译:运动模式生成网络中尖峰时间和神经元功能的状态依赖性

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摘要

When sustained firing of a neuron is similar in different types of motor programs, its role in the generation of these programs is often similar. We investigated whether this is also the case for neurons involved in phase transition. In the Aplysia feeding central pattern generator (CPG), identified interneuron B64 starts firing at the transition between the protraction and the retraction phases of all types of motor programs, and its firing is sustained during the retraction phase. It was thought that B64 functions as a protraction terminator as it provides strong inhibitory input to protraction interneurons and motoneurons. Furthermore, premature activation of B64 can lead to premature termination of the protraction phase. Indeed, as we show here, B64 can terminate the protraction phase regardless of the type of motor program. However, B64 actually only functions as a protraction terminator in ingestive-like but not in egestive-like programs. This differential role of B64 results from a differential timing of the initiation of B64 spiking in the two types of programs. In turn, this differential timing of the initiation of B64 firing is determined by the internal state of the CPG. Thus, this study indicates the importance of the timing of initiation of firing in determining the functional role of a neuron and demonstrates that this role depends on the activity-dependent state of the network.
机译:当神经元的持续激发在不同类型的运动程序中相似时,其在这些程序的生成中的作用通常相似。我们调查了相变中涉及的神经元是否也是这种情况。在Aplysia馈电中央模式发生器(CPG)中,已识别的中间神经元B64在所有类型的电机程序的前进和退回阶段之间的过渡时开始点火,并且在退回阶段持续其点火。人们认为B64可以作为延长终止子,因为它为延长内部神经元和运动神经元提供了强大的抑制输入。此外,B64的过早激活会导致延长阶段的过早终止。确实,正如我们在此处所示,无论电机程序的类型如何,B64都可以终止延长阶段。但是,B64实际上仅在类似摄食的程序中充当延长终止符,而在类似摄食的程序中则不行。 B64的这种不同作用是由两种程序中B64尖峰启动的不同时序造成的。反过来,B64触发开始的这个不同时机由CPG的内部状态决定。因此,这项研究表明了在确定神经元的功能作用时开始点火的时间很重要,并证明了这种作用取决于网络的活动依赖性状态。

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