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Pre-processing and transfer entropy measures in motor neurons controlling limb movements

机译:运动神经元中控制肢体运动的预处理和传递熵措施

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Directed information transfer measures are increasingly being employed in modeling neural system behavior due to their model-free approach, applicability to nonlinear and stochastic signals, and the potential to integrate repetitions of an experiment. Intracellular physiological recordings of graded synaptic potentials provide a number of additional challenges compared to spike signals due to non-stationary behaviour generated through extrinsic processes. We therefore propose a method to overcome this difficulty by using a preprocessing step based on Singular Spectrum Analysis (SSA) to remove nonlinear trends and discontinuities. We apply the method to intracellular recordings of synaptic responses of identified motor neurons evoked by stimulation of a proprioceptor that monitors limb position in leg of the desert locust. We then apply normalized delayed transfer entropy measures to neural responses evoked by displacements of the proprioceptor, the femoral chordotonal organ, that contains sensory neurones that monitor movements about the femoral-tibial joint. We then determine the consistency of responses within an individual recording of an identified motor neuron in a single animal, between repetitions of the same experiment in an identified motor neurons in the same animal and in repetitions of the same experiment from the same identified motor neuron in different animals. We found that delayed transfer entropy measures were consistent for a given identified neuron within and between animals and that they predict neural connectivity for the fast extensor tibiae motor neuron.
机译:由于其无模型方法,对非线性和随机信号的适用性以及整合实验重复的潜力,定向信息传递措施正越来越多地用于对神经系统行为进行建模。与尖峰信号相比,分级突触电位的细胞内生理学记录由于外在过程产生的非平稳行为而带来了许多其他挑战。因此,我们提出了一种通过使用基于奇异频谱分析(SSA)的预处理步骤来消除非线性趋势和不连续性的方法来克服这一困难。我们将这种方法应用于通过识别沙漠蝗虫腿的肢体位置的本体感受器的刺激诱发的运动神经元的突触反应的细胞内记录。然后,我们将归一化的延迟转移熵测度应用于本体感受器(股线软骨器官)的移位所引起的神经反应,该感受器包含监测股骨胫骨关节运动的感觉神经元。然后,我们确定在同一只动物中识别出的运动神经元的单个记录中,同一动物中识别出的运动神经元的同一实验的重复之间以及同一动物中同一识别出的运动神经元的同一实验的重复之间的响应一致性。不同的动物。我们发现延迟转移熵测度对于给定的动物内和动物间神经元是一致的,并且它们预测了快速伸肌运动神经元的神经连通性。

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