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Modeling traumatic brain injury in vitro: functional changes in the absence of cell death

机译:体外模拟创伤性脑损伤:缺乏细胞死亡的功能变化

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Traumatic brain injury (TBI) is caused by deformation in response to mechanical loading of the head. An extended biological cascade is initiated by the deformation and results in delayed cell death and dysfunction. Using an in vitro model of TBI based on organotypic brain slice cultures, we have quantitatively studied the relationship between tissue deformation and outcome. In the current study, we asked the question whether low levels of tissue strain would affect brain tissue function as measured by electrophysiological recordings. In response to 5% and 10% biaxial Lagrangian strain the maximal evoked response was decreased and the current to elicit a half maximal response was increased. These results indicate that less neurons were firing in response to an electrical stimulus and that they were less excitable. These results suggest that functional alterations of neuronal networks occurs at lower strains than those required to induce cell death.
机译:创伤性脑损伤(TBI)是由响应机械负荷的变形而引起的。通过变形引发扩展的生物级联并导致延迟细胞死亡和功能障碍。基于有机型脑切片培养的TBI的体外模型,我们已经定量地研究了组织变形和结果之间的关系。在目前的研究中,我们询问问题是否低水平的组织应变会影响通过电生理记录测量的脑组织功能。响应于5%和10%双轴拉格朗日菌株,最大诱发的反应减少,增加了发出半最大反应的电流。这些结果表明,响应电刺激而烧制较少的神经元,并且它们易于兴奋。这些结果表明,神经元网络的功能改变发生在较低菌株中,而不是诱导细胞死亡所需的菌株。

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