控制神经网络响应:权衡与约束。

Frontiers in neuroengineering Pub Date : 2014-04-29 eCollection Date: 2014-01-01 DOI:10.3389/fneng.2014.00011
Hanna Keren, Shimon Marom
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引用次数: 24

摘要

近年来,在发展先进的医学应用的背景下,在控制全脑水平的神经群体反应方面投入了大量的努力。然而,由于研究全脑动力学所带来的明显复杂性,所涉及的权衡和限制仍然难以捉摸。在这里,我们提出了在体外数小时内有效控制皮层网络的反应特征(概率和潜伏期),并将这种方法作为在更广泛背景下研究神经网络可控性的实验工具。通过实践这种方法,我们发现通过闭环控制来实现稳定的高活动率可能会增强潜在的全局输入输出关系的改变,以及神经网络中神经元成对相关的活动依赖分散。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Controlling neural network responsiveness: tradeoffs and constraints.

Controlling neural network responsiveness: tradeoffs and constraints.

Controlling neural network responsiveness: tradeoffs and constraints.

Controlling neural network responsiveness: tradeoffs and constraints.

In recent years much effort is invested in means to control neural population responses at the whole brain level, within the context of developing advanced medical applications. The tradeoffs and constraints involved, however, remain elusive due to obvious complications entailed by studying whole brain dynamics. Here, we present effective control of response features (probability and latency) of cortical networks in vitro over many hours, and offer this approach as an experimental toy for studying controllability of neural networks in the wider context. Exercising this approach we show that enforcement of stable high activity rates by means of closed loop control may enhance alteration of underlying global input-output relations and activity dependent dispersion of neuronal pair-wise correlations across the network.

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