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Nonlinear Response Properties of Combination-Sensitive Electrosensory Neurons in the Midbrain of Gymnarchus niloticus

机译:尼罗非鱼中脑组合敏感电感觉神经元的非线性响应特性

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摘要

The jamming avoidance response of the weakly electric fish Gymnarchus niloticus relies on determining the sign of the frequency difference (Df) between the fish's own electric organ discharge (EOD) and that of a neighbor, which is achieved by comparing modulations in amplitude (AM) and phase (PM) that result from the summation of their EODs. These two stimulus features are processed in separate pathways that converge in the torus semicircularis on combination-sensitive neurons, many of which are selective for the sign of Df. We recorded extracellular single-unit responses to independent stimulation with AM and PM and combined AM-PM stimulation to determine how sign selectivity is established. Responses to AM and PM frequently summated nonlinearly, leading to sign-selective responses as a result of facilitation to the preferred sign of Df and/or suppression to the nonpreferred sign of Df. Facilitation typically occurred when responses to AM and PM were aligned, whereas suppression typically occurred when they were offset. By experimentally manipulating the degree of alignment between these two responses, we found that the summed response was dependent on their relative timing. In addition, we found a unique class of units that were sensitive to differences in amplitude between two body surfaces. This sensitivity rendered such units immune to the problem of orientation ambiguity, in which the sign selectivity of a single neuron reverses with changes in stimulus orientation. We discuss potential synaptic mechanisms for driving nonlinear responses in these and other combination-sensitive neurons.
机译:弱电鱼裸Gym鱼(Gymnarchus niloticus)的干扰避免响应取决于确定鱼自身电器官放电(EOD)与邻居的电器官放电之间的频率差(Df)的符号,这是通过比较振幅调制(AM)来实现的和EOD相加得出的相位(PM)。这两个刺激特征是在单独的途径中处理的,这些途径会汇聚在组合敏感神经元的半圆环面,其中许多对Df征兆具有选择性。我们记录了对AM和PM的独立刺激以及结合AM-PM刺激的细胞外单细胞应答,以确定如何建立信号选择性。对AM和PM的响应通常是非线性求和的,这是由于对Df的首选符号的促进和/或对Df的非首选符号的抑制导致了符号选择响应。促进通常发生在对AM和PM的响应一致时,而抑制通常发生在抵消时。通过实验操作这两个响应之间的对齐程度,我们发现求和后的响应取决于它们的相对时间。此外,我们发现了一类独特的单位,它们对两个身体表面之间的振幅差异敏感。这种敏感性使这些单元不受定向歧义问题的困扰,在定向歧义问题中,单个神经元的符号选择性随着刺激定向的改变而反转。我们讨论驱动这些和其他组合敏感神经元中的非线性响应的潜在突触机制。

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