Marquez Mariana M, Chacron Maurice J
Department of Physiology, McGill University, Canada.
Heliyon. 2023 Jul 14;9(7):e18315. doi: 10.1016/j.heliyon.2023.e18315. eCollection 2023 Jul.
How neural populations encode sensory input to generate behavioral responses remains a central problem in systems neuroscience. Here we investigated how neuromodulation influences population coding of behaviorally relevant stimuli to give rise to behavior in the electrosensory system of the weakly electric fish . We performed multi-unit recordings from ON and OFF sensory pyramidal cells in response to stimuli whose amplitude (i.e., envelope) varied in time, before and after electrical stimulation of the raphe nuclei. Overall, raphe stimulation increased population coding by ON- but not by OFF-type cells, despite both cell types showing similar sensitivities to the stimulus at the single neuron level. Surprisingly, only changes in population coding by ON-type cells were correlated with changes in behavioral responses. Taken together, our results show that neuromodulation differentially affects ON vs. OFF-type cells in order to enhance perception of behaviorally relevant sensory input.
神经群体如何编码感觉输入以产生行为反应仍然是系统神经科学中的一个核心问题。在此,我们研究了神经调节如何影响行为相关刺激的群体编码,从而在弱电鱼的电感觉系统中引发行为。我们在中缝核电刺激前后,对ON型和OFF型感觉锥体细胞进行了多单元记录,以响应其幅度(即包络)随时间变化的刺激。总体而言,中缝核刺激增强了ON型细胞而非OFF型细胞的群体编码,尽管两种细胞类型在单神经元水平上对刺激表现出相似的敏感性。令人惊讶的是,只有ON型细胞的群体编码变化与行为反应的变化相关。综上所述,我们的结果表明,神经调节对ON型和OFF型细胞有不同的影响,以增强对行为相关感觉输入的感知。