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Network feedback regulates motor output across a range of modulatory neuron activity

机译:网络反馈可调节一系列调节神经元活动的运动输出

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摘要

Modulatory projection neurons alter network neuron synaptic and intrinsic properties to elicit multiple different outputs. Sensory and other inputs elicit a range of modulatory neuron activity that is further shaped by network feedback, yet little is known regarding how the impact of network feedback on modulatory neurons regulates network output across a physiological range of modulatory neuron activity. Identified network neurons, a fully described connectome, and a well-characterized, identified modulatory projection neuron enabled us to address this issue in the crab (Cancer borealis) stomatogastric nervous system. The modulatory neuron modulatory commissural neuron 1 (MCN1) activates and modulates two networks that generate rhythms via different cellular mechanisms and at distinct frequencies. MCN1 is activated at rates of 5–35 Hz in vivo and in vitro. Additionally, network feedback elicits MCN1 activity time-locked to motor activity. We asked how network activation, rhythm speed, and neuron activity levels are regulated by the presence or absence of network feedback across a physiological range of MCN1 activity rates. There were both similarities and differences in responses of the two networks to MCN1 activity. Many parameters in both networks were sensitive to network feedback effects on MCN1 activity. However, for most parameters, MCN1 activity rate did not determine the extent to which network output was altered by the addition of network feedback. These data demonstrate that the influence of network feedback on modulatory neuron activity is an important determinant of network output and feedback can be effective in shaping network output regardless of the extent of network modulation.
机译:调节投射神经元改变网络神经元的突触和内在特性,以引发多个不同的输出。感觉和其他输入引起一系列调节性神经元活动,这些活动进一步受到网络反馈的影响,但是关于网络反馈对调节性神经元的影响如何在整个调节性神经元活动的生理范围内调节网络输出知之甚少。鉴定出的网络神经元,完整描述的连接体以及特征明确的鉴定出的调​​节投射神经元使我们能够解决螃蟹(胃癌)气孔胃神经系统中的这一问题。调制神经元调制连合神经元1(MCN1)激活并调制通过不同细胞机制和不同频率生成节律的两个网络。在体内和体外,MCN1的激活速率为5–35 Hz。此外,网络反馈会导致MCN1活动被时间锁定为运动活动。我们询问了在整个MCN1活动速率的生理范围内,是否通过网络反馈来调节网络激活,节奏速度和神经元活动水平。这两个网络对MCN1活动的响应既有相似之处,也有不同之处。两个网络中的许多参数都对网络反馈对MCN1活动的影响敏感。但是,对于大多数参数,MCN1活动速率并不能确定通过添加网络反馈来更改网络输出的程度。这些数据表明,网络反馈对调制神经元活动的影响是网络输出的重要决定因素,无论网络调制的程度如何,反馈都可以有效地塑造网络输出。

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