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Stretchable Micro-Electrode Arrays for Dynamic Neuronal Recording of In Vitro Mechanically Injured Brain

机译:伸展微电极阵列,用于体外机械受伤脑的动态神经元记录

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Traumatic Brain Injury (TBI) is the result of sudden external mechanical forces applied to the head. Compression, stretching and shear deform the brain tissue inducing cellular damage that may develop within a couple of days following the initial trauma. TBI can be modeled in vitro by rapidly stretching brain slice cultures grown on silicone membranes. Stretchable Micro-Electrode Arrays (SMEAs) prepared on such elastomeric substrates will enable the electrical recording of brain neuronal activity prior to, during and after mechanical deformation, promising new insights in mechano-biology and possible therapeutic interventions. SMEAs of 2X2 thin gold micro-electrode arrays have been patterned on 250(mu)m thick silicone membranes. We report their fabrication process and electro-mechanical characteristics. The first SMEA prototypes are biocompatible with brain organotypic hippocampal cultures and robust to rapid equi-biaxial stretching at a 2,000percent per second strain rate to 20percent strain.
机译:创伤性脑损伤(TBI)是施加到头部突然外部机械力的结果。压缩,拉伸和剪切变形诱导初始创伤后几天内可能发生的细胞损伤的脑组织。通过在硅胶膜上生长的迅速伸展脑切片培养,可以在体外模拟TBI。在这种弹性体基材上制备的可伸展微电极阵列(SMEAS)将在机械变形之前和之后进行脑神经元活性的电气记录,希望在机械生物学和可能的治疗性干预方面具有新的见解。 2x2薄金微电极阵列的SMEAS已在250(mU)M厚的硅氧烷膜上进行图案。我们报告了它们的制造工艺和机电特性。第一液体原型与脑有机型海马培养物中的生物相容,并且以每秒2次应变速率为20℃的2 000±2次菌株的快速均匀伸展。

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