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How to Culture Record and Stimulate Neuronal Networks on Micro-electrode Arrays (MEAs)

机译:如何在微电极阵列(MEA)上培养记录和刺激神经元网络

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摘要

For the last century, many neuroscientists around the world have dedicated their lives to understanding how neuronal networks work and why they stop working in various diseases. Studies have included neuropathological observation, fluorescent microscopy with genetic labeling, and intracellular recording in both dissociated neurons and slice preparations. This protocol discusses another technology, which involves growing dissociated neuronal cultures on micro-electrode arrays (also called multi-electrode arrays, MEAs).There are multiple advantages to using this system over other technologies. Dissociated neuronal cultures on MEAs provide a simplified model in which network activity can be manipulated with electrical stimulation sequences through the array's multiple electrodes. Because the network is small, the impact of stimulation is limited to observable areas, which is not the case in intact preparations. The cells grow in a monolayer making changes in morphology easy to monitor with various imaging techniques. Finally, cultures on MEAs can survive for over a year in vitro which removes any clear time limitations inherent with other culturing techniques.1Our lab and others around the globe are utilizing this technology to ask important questions about neuronal networks. The purpose of this protocol is to provide the necessary information for setting up, caring for, recording from and electrically stimulating cultures on MEAs. In vitro networks provide a means for asking physiologically relevant questions at the network and cellular levels leading to a better understanding of brain function and dysfunction.
机译:在上个世纪,世界各地的许多神经科学家都致力于研究神经网络如何工作以及为什么停止在各种疾病中工作。研究包括神经病理学观察,带有遗传标记的荧光显微镜以及解离的神经元和切片制品的细胞内记录。该协议讨论了另一项技术,该技术涉及在微电极阵列(也称为多电极阵列,MEA)上生长解离的神经元培养物。与其他技术相比,使用该系统具有多个优势。 MEA上分离的神经元培养物提供了简化的模型,其中可以通过阵列的多个电极用电刺激序列来操纵网络活动。由于网络很小,因此刺激的影响仅限于可观察区域,而完整制剂则不是这种情况。细胞以单层生长,从而使形态变化易于通过各种成像技术进行监测。最后,MEAs的培养物可以在体外存活超过一年,这消除了其他培养技术固有的任何明确的时间限制。 1 我们的实验室和全球其他实验室都在利用这种技术来询问有关神经元的重要问题。网络。该协议的目的是为在MEA上建立,照顾,记录和电刺激培养物提供必要的信息。体外网络提供了一种在网络和细胞水平上询问生理相关问题的方法,从而可以更好地了解脑功能和功能障碍。

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