Wavenumber-dependent transmission of subthreshold waves on electrical synapses network model of Caenorhabditis elegans
Wavenumber-dependent transmission of subthreshold waves on electrical synapses network model of Caenorhabditis elegans
Abstract Recent experimental studies showed that electrically coupled neural networks like in mammalian inferior olive nucleus generate synchronized rhythmic activity by the subthreshold sinusoidal-like oscillations of the membrane voltage. Understanding the basic mechanism and its implication of such phenomena in the nervous system bears fundamental importance and requires preemptively the connectome information of a given nervous system. Inspired by these necessities of developing a theoretical and computational model to this end and, however, in the absence of connectome information for the inferior olive nucleus, here we investigated interference phenomena of the subthreshold oscillations in the reference system Caenorhabditis elegans for which the structural anatomical connectome was completely known recently. We evaluated how strongly the sinusoidal wave was transmitted between arbitrary two cells in the model network. The region of cell-pairs that are good at transmitting waves changed according to the wavenumber of the wave, for which we named a wavenumber-dependent transmission map. Also, we unraveled that 1) the transmission of all cell-pairs disappeared beyond a threshold wavenumber, 2) long-distance and regular patterned transmission existed in the body-wall muscles part of the model network, and 3) major hub cell-pairs of the transmission were identified for many wavenumber conditions. A theoretical and computational model presented in this study provided fundamental insight for understanding how the multi-path constructive/destructive interference of the subthreshold oscillations propagating on electrically coupled neural networks could generate wavenumber-dependent synchronized rhythmic activity.
Chang Iksoo、Kim Sangyeol、Chung Taegon
Department of Brain Sciences,||Creative Research Initiative Center for Proteome Biophysics,||Supercomputing Bigdata Center, Daegu Gyeongbuk Institute of Science and TechnologyDepartment of Brain Sciences,||Creative Research Initiative Center for Proteome Biophysics,Department of Brain Sciences,
生物物理学细胞生物学
Electrical synapses networkSubthreshold oscillationsCaenorhabditis elegansWavenumber-dependent transmission mapSynchronized rhythmic activity
Chang Iksoo,Kim Sangyeol,Chung Taegon.Wavenumber-dependent transmission of subthreshold waves on electrical synapses network model of Caenorhabditis elegans[EB/OL].(2025-03-28)[2025-05-04].https://www.biorxiv.org/content/10.1101/2024.06.13.598855.点此复制
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