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A novel in vitro shear device for high strain rate injury of three-dimensional co-cultures of neurons and astrocytes

机译:一种新型抗神经元和星形胶质细胞高应变率损伤的新型体外剪切装置

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Every year in the U.S. TBI results in numerous disabilities and death, so it has become extremely important to learn more about TBI. To accurately mimic a traumatic insult, we have designed a device to test 3-D cell cultures that undergo largeshear deformations at high strain rates. There have been numerous models to simulate TBI in vitro, but due to limitations of 2-D cell cultures, in vivo responses may not be accurately simulated. This model stands to address these limitations and provide a more precise in vitro simulation of TBI. A custom designed device capable of shear strain of up to 50% was constructed in order to determine the impact of shearing effects on neural cell cultures. Future tests will provide a variety of cellular outcomessuch as real-time monitoring of cytosolic ions and cell survival.
机译:每年在美国,TBI导致许多残疾和死亡,因此了解更多关于TBI的人们非常重要。为了准确地模仿创伤性损伤,我们设计了一种用于测试在高应变率下进行大量变形的3-D细胞培养物的装置。已经有许多模型在体外模拟TBI,但由于2-D细胞培养物的限制,在体内反应中可能无法精确模拟。该模型能够解决这些限制,并提供更精确的TBI体外模拟。构建能够剪切应变的定制设计的装置,以确定剪切效应对神经细胞培养物的影响。未来的测试将提供各种蜂窝状外代表作为细胞骨离子和细胞存活的实时监测。

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