Endo Wagner, Santos Fernando P, Simpson David, Maciel Carlos D, Newland Philip L
Department of Electrical Engineering, Federal Technological University of Paraná, Av. Alberto Carazzai, 1640, Cornélio Procópio, Paraná, Brazil,
J Comput Neurosci. 2015 Apr;38(2):427-38. doi: 10.1007/s10827-015-0548-6. Epub 2015 Feb 3.
Understanding the patterns of interconnections between neurons in complex networks is an enormous challenge using traditional physiological approaches. Here we combine the use of an information theoretic approach with intracellular recording to establish patterns of connections between layers of interneurons in a neural network responsible for mediating reflex movements of the hind limb of an insect. By analysing delayed mutual information of the synaptic and spiking responses of sensory neurons, spiking and nonspiking interneurons in response to movement of a joint receptor that monitors the position of the tibia relative to the femur, we are able to predict the patterns of interconnections between the layers of sensory neurons and interneurons in the network, with results matching closely those known from the literature. In addition, we use cross-correlation methods to establish the sign of those interconnections and show that they also show a high degree of similarity with those established for these networks over the last 30 years. The method proposed in this paper has great potential to elucidate functional connectivity at the neuronal level in many different neuronal networks.
运用传统生理学方法来理解复杂网络中神经元之间的相互连接模式是一项巨大的挑战。在此,我们将信息论方法与细胞内记录相结合,以建立一个负责介导昆虫后肢反射运动的神经网络中中间神经元各层之间的连接模式。通过分析感觉神经元的突触和放电反应、发放和不发放的中间神经元对监测胫骨相对于股骨位置的关节感受器运动的延迟互信息,我们能够预测网络中感觉神经元层和中间神经元层之间的互连模式,其结果与文献中已知的结果非常吻合。此外,我们使用互相关方法来确定这些互连的符号,并表明它们与过去30年为这些网络建立的符号也高度相似。本文提出的方法在阐明许多不同神经元网络中神经元水平的功能连接方面具有巨大潜力。