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首页> 外文期刊>Applied bionics and biomechanics >Cultured Neural Networks: Optimization of Patterned Network Adhesiveness and Characterization of their Neural Activity
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Cultured Neural Networks: Optimization of Patterned Network Adhesiveness and Characterization of their Neural Activity

机译:培养的神经网络:模式化网络粘附性的优化及其神经活动的表征

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摘要

One type of future, improved neural interface is the “cultured probe”. It is a hybrid type of neural information transducer or prosthesis, for stimulation and/or recording of neural activity. It would consist of a microelectrode array (MEA) on a planar substrate, each electrode being covered and surrounded by a local circularly confined network (“island”) of cultured neurons. The main purpose of the local networks is that they act as biofriendly intermediates for collateral sprouts from thein vivosystem, thus allowing for an effective and selective neuron–electrode interface. As a secondary purpose, one may envisage future information processing applications of these intermediary networks. In this paper, first, progress is shown on how substrates can be chemically modified to confine developing networks, cultured from dissociated rat cortex cells, to “islands” surrounding an electrode site. Additional coating of neurophobic, polyimide-coated substrate by triblock-copolymer coating enhances neurophilic-neurophobic adhesion contrast. Secondly, results are given on neuronal activity in patterned, unconnected and connected, circular “island” networks. For connected islands, the larger the island diameter (50, 100 or 150 μm), the more spontaneous activity is seen. Also, activity may show a very high degree of synchronization between two islands. For unconnected islands, activity may start at 22 days in vitro (DIV), which is two weeks later than in unpatterned networks.
机译:未来改进的神经接口的一种类型是“培养探针”。它是神经信息传感器或假体的混合类型,用于刺激和/或记录神经活动。它由平面基板上的微电极阵列(MEA)组成,每个电极被培养的神经元的局部圆形局限网络(“岛”)覆盖并围绕。本地网络的主要目的是它们充当体内系统侧枝的生物友好中间体,从而实现有效且选择性的神经元-电极界面。作为次要目的,可以设想这些中间网络的未来信息处理应用。在本文中,首先,显示了如何对底物进行化学修饰以限制从分离的大鼠皮层细胞培养的发展网络到围绕电极部位的“岛”的进展。通过三嵌段共聚物涂层额外涂覆憎神经的,聚酰亚胺涂覆的基材,可增强嗜神经-憎神经的粘附力。其次,在图案化,未连接和连接的圆形“岛”网络中给出神经元活动的结果。对于相连的岛,岛直径(50、100或150μm)越大,看到的自发活动越多。同样,活动可能显示两个岛之间的高度同步。对于未连接的岛屿,活动可能始于体外(DIV)的22天,这比无模式的网络晚了两周。

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