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Plasticity and tuning of the time course of analog persistent firing in a neural integrator

机译:神经积分器中模拟持续点火的可塑性和时间过程的调整

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摘要

In a companion paper, we reported that the goldfish oculomotor neural integrator could be trained to instability or leak by rotating the visual surround with a velocity proportional to +/- horizontal eye position, respectively. Here we analyze changes in the firing rate behavior of neurons in area I in the caudal brainstem, a central component of the oculomotor neural integrator. Persistent firing could be detuned to instability and leak, respectively, along with fixation behavior. Prolonged training could reduce the time constant of persistent firing of some cells by more than an order of magnitude, to <1 s. Normal visual feedback gradually retuned persistent firing of integrator neurons toward stability, along with fixation behavior. In animals with unstable fixations, approximately half of the eye position-related cells had upward or unstable firing rate drift. In animals with leaky fixations, two-thirds of the eye position-related cells showed leaky firing drift. The remaining eye position-related cells, generally those with lower eye position thresholds, showed a more complex pattern of history-dependent/predictive firing rate drift in relation to eye drift. These complex drift cells often showed a drop in maximum persistent firing rate after training to leak. Despite this diversity, firing drift and the degree of instability or leak in firing rates were broadly correlated with fixation performance. The presence, strength, and reversibility of this plasticity demonstrate that, in this system, visual feedback plays a vital role in gradually tuning the time course of persistent neural firing.
机译:在另一篇论文中,我们报道了金鱼动眼神经整合器可以通过分别以与+/-水平眼位置成比例的速度旋转视觉周围区域来训练其不稳定或泄漏。在这里,我们分析了尾部脑干(动眼神经积分器的核心组成部分)的I区神经元放电速率行为的变化。持续性发射可能会与固定行为一起失调为不稳定和泄漏。长时间的训练可使某些细胞持续放电的时间常数减少一个数量级以上,<1 s。正常的视觉反馈逐渐将整合神经元的持续放电恢复到稳定状态,以及固定行为。在固定不稳固的动物中,大约一半的与眼位相关的细胞具有向上或不稳定的放电速率漂移。在固定眼漏的动物中,三分之二的眼位相关细胞显示出漏电的放电漂移。其余的与眼位相关的单元,通常是那些具有较低眼位阈值的单元,显示出与眼动有关的更复杂的历史相关/预测射击率漂移模式。这些复杂的漂移池在训练泄漏后通常表现出最大持续放电率下降。尽管存在这种多样性,但射击漂移和射击速率的不稳定性或泄漏程度与固色性能广泛相关。这种可塑性的存在,强度和可逆性表明,在该系统中,视觉反馈在逐渐调整持续性神经激发的时间过程中起着至关重要的作用。

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