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首页> 外文期刊>Frontiers in Neuroscience >Barbed channels enhance unidirectional connectivity between neuronal networks cultured on multi electrode arrays
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Barbed channels enhance unidirectional connectivity between neuronal networks cultured on multi electrode arrays

机译:带刺的通道增强了在多电极阵列上培养的神经元网络之间的单向连通性

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摘要

Cultured neurons on multi electrode arrays (MEAs) have been widely used to study various aspects of neuronal (network) functioning. A possible drawback of this approach is the lack of structure in these networks. At the single cell level, several solutions have been proposed to enable directed connectivity, and promising results were obtained. At the level of connected sub-populations, a few attempts have been made with promising results. First assessment of the designs' functionality, however, suggested room for further improvement. We designed a two chamber MEA aiming to create a unidirectional connection between the networks in both chambers (“ emitting” and “ receiving” ). To achieve this unidirectionality, all interconnecting channels contained barbs that hindered axon growth in the opposite direction (from receiving to emitting chamber). Visual inspection showed that axons predominantly grew through the channels in the promoted direction. This observation was confirmed by spontaneous activity recordings. Cross-correlation between the signals from two electrodes inside the channels suggested signal propagation at ≈2 m/s from emitting to receiving chamber. Cross-correlation between the firing patterns in both chambers indicated that most correlated activity was initiated in the emitting chamber, which was also reflected by a significantly lower fraction of partial bursts (i.e., a one-chamber-only burst) in the emitting chamber. Finally, electrical stimulation in the emitting chamber induced a fast response in that chamber, and a slower response in the receiving chamber. Stimulation in the receiving chamber evoked a fast response in that chamber, but no response in the emitting chamber. These results confirm the predominantly unidirectional nature of the connecting channels from emitting to receiving chamber.
机译:在多电极阵列(MEA)上培养的神经元已被广泛用于研究神经元(网络)功能的各个方面。这种方法的可能缺点是这些网络缺乏结构。在单小区级别,已经提出了几种解决方案以实现定向连接,并获得了可喜的结果。在连接的子人口级别,已经进行了一些尝试,并取得了可喜的结果。但是,对设计功能的首次评估建议有进一步改进的余地。我们设计了两个腔室MEA,旨在在两个腔室中的网络之间建立一个单向连接(“发射”和“接收”)。为了实现这种单向性,所有互连通道都包含倒钩,这些倒钩阻碍了轴突沿相反方向(从接收腔到发射腔)的生长。目视检查表明,轴突主要在通道中沿所促进的方向生长。自发活动记录证实了这一观察结果。通道内两个电极的信号之间的互相关表明信号以大约2 m / s的速度从发射腔传输到接收腔。两个腔室中点火模式之间的互相关表明,最相关的活动是在发射腔室中启动的,这也反映为发射腔室中的部分脉冲串(即仅一个腔室的脉冲串)明显较低。最后,发射室中的电刺激在该室中引起快速响应,而在接收室中引起较慢的响应。接收腔中的刺激在该腔中引起快速响应,但在发射腔中无响应。这些结果证实了连接通道从发射室到接收室的主要单向性。

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