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Long-term optical stimulation of channelrhodopsin-expressing neurons to study network plasticity

机译:表达视紫红质蛋白的神经元的长期光学刺激以研究网络可塑性

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摘要

Neuronal plasticity produces changes in excitability, synaptic transmission, and network architecture in response to external stimuli. Network adaptation to environmental conditions takes place in time scales ranging from few seconds to days, and modulates the entire network dynamics. To study the network response to defined long-term experimental protocols, we setup a system that combines optical and electrophysiological tools embedded in a cell incubator. Primary hippocampal neurons transduced with lentiviruses expressing channelrhodopsin-2/H134R were subjected to various photostimulation protocols in a time window in the order of days. To monitor the effects of light-induced gating of network activity, stimulated transduced neurons were simultaneously recorded using multi-electrode arrays (MEAs). The developed experimental model allows discerning short-term, long-lasting, and adaptive plasticity responses of the same neuronal network to distinct stimulation frequencies applied over different temporal windows.
机译:神经元可塑性响应外界刺激而引起兴奋性,突触传递和网络结构的变化。网络对环境条件的适应时间范围从几秒钟到几天不等,并且调节了整个网络的动态。为了研究网络对定义的长期实验协议的响应,我们建立了一个系统,该系统结合了嵌入在细胞培养箱中的光学和电生理工具。用表达channelrhodopsin-2 / H134R的慢病毒转导的原代海马神经元在数天内按时间窗进行各种光刺激方案。为了监视光诱导的门控网络活动的影响,使用多电极阵列(MEA)同时记录了刺激的转导神经元。开发的实验模型可以识别同一神经网络对施加在不同时间窗上的不同刺激频率的短期,持久和自适应可塑性响应。

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