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Quantification of Functional Alterations after In Vitro Traumatic Brain Injury

机译:体外创伤后函数变化的定量

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Traumatic brain injury (TBI) is caused by mechanical forces, producing tissue deformation at the moment of injury. Complex cellular, neurochemical and metabolic alterations are initiated by the deformation and result 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 functional outcome. Specifically, we studied the effects of low levels of tissue deformation on the functional outcomes as measured by electrophysiology recordings. In response to 5% and 10% biaxial Lagrangian strain, the maximal evoked response and the excitability of neural networks were found to be decreased. Additionally, the different anatomic subregions of the hippocampus displayed different levels of impairment to the injuries. These results suggest that the network function was affected by low levels of applied strain which induced minimal cell death in previous studies.
机译:创伤性脑损伤(TBI)是由机械力引起的,在损伤时产生组织变形。通过变形引发复杂的细胞,神经化学和代谢改变,并导致延迟细胞死亡和功能障碍。基于有机型脑切片培养物使用TBI的体外模型,我们已经定量地研究了组织变形与功能结果之间的关系。具体地,我们研究了通过电生理记录测量的功能结果对低水平的组织变形的影响。响应于5%和10%双轴拉格朗日菌株,发现最大诱发的反应和神经网络的兴奋性降低。此外,海马的不同解剖学次区显示出对伤害的不同程度的损伤。这些结果表明,网络功能受到低水平的应用菌株的影响,诱导先前研究中的最小细胞死亡。

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