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Short-Term Memory of Motor Network Performance via Activity-Dependent Potentiation of Na+/K+ Pump Function

机译:通过活动依赖增强Na + / K + 泵功能

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摘要

Brain networks memorize previous performance to adjust their output in light of past experience. These activity-dependent modifications generally result from changes in synaptic strengths or ionic conductances, and ion pumps have only rarely been demonstrated to play a dynamic role. Locomotor behavior is produced by central pattern generator (CPG) networks and modified by sensory and descending signals to allow for changes in movement frequency, intensity, and duration, but whether or how the CPG networks recall recent activity is largely unknown. In Xenopus frog tadpoles, swim bout duration correlates linearly with interswim interval, suggesting that the locomotor network retains a short-term memory of previous output. We discovered an ultraslow, minute-long afterhyperpolarization (usAHP) in network neurons following locomotor episodes. The usAHP is mediated by an activity- and sodium spike-dependent enhancement of electrogenic Na(+)/K(+) pump function. By integrating spike frequency over time and linking the membrane potential of spinal neurons to network performance, the usAHP plays a dynamic role in short-term motor memory. Because Na(+)/K(+) pumps are ubiquitously expressed in neurons of all animals and because sodium spikes inevitably accompany network activity, the usAHP may represent a phylogenetically conserved but largely overlooked mechanism for short-term memory of neural network function.
机译:脑网络会记住以前的表现,以根据过去的经验来调整其输出。这些依赖于活性的修饰通常是由突触强度或离子电导率的变化引起的,而离子泵仅很少被证明具有动态作用。运动行为是由中央模式发生器(CPG)网络产生的,并通过感觉信号和下降信号进行修改,以允许运动频率,强度和持续时间发生变化,但是CPG网络是否或如何回忆最近的活动尚不清楚。在非洲爪蟾蛙t中,游泳回合的持续时间与游泳间隔成线性关系,这表明运动网络保留了先前输出的短期记忆。我们发现运动发作后,网络神经元出现超慢,长分钟的超极化后(usAHP)。 usAHP是由活性和钠峰值依赖的电致Na(+)/ K(+)泵功能介导的。通过随时间积分尖峰频率并将脊髓神经元的膜电位与网络性能联系起来,usAHP在短期运动记忆中起着动态作用。由于Na(+)/ K(+)泵在所有动物的神经元中都普遍表达,并且由于钠峰值不可避免地伴随网络活动,因此usAHP可能代表了系统发育上保守的机制,但对于神经网络功能的短期记忆却被大大忽略了。

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