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Investigation of diffuse axonal injury induced by rotational acceleration via numerical reconstructions of in vivo rat head impact experiments

机译:通过体内大鼠头部撞击实验的数值重建研究旋转加速度引起的弥漫性轴索损伤

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The purpose of this study is to investigate the brain-strain-based thresholds for better prediction of the diffuse axonal injury (DAI) induced by a rotational acceleration on the rat brain. A previously developed and validated rat head finite element model was used to reconstruct 26 in vivo rat head impact experiments. DAI was produced via the high rotational acceleration applied to the rat head on the sagittal plane. Intracranial strain and strain-based injury indexes were calculated, including the maximum principal strain (MPS), the product of strain and strain rate, and the cumulative strain damage measure (CSDM). The region-specific conservative thresholds for DAI were estimated in terms of strain and strain-based injury indexes in the frontal, middle, and occipital regions of the corpus callosum. The axonal injuries observed in the experiments were used to formulate the injury risk functions, and the DAI risks were analysed via binary logistic regressions in terms of the calculated injury indexes. The logistic regression analysis demonstrated that the MPS, the product of strain and strain rate, as well as the CSDM were significantly correlated with DAI in the frontal corpus callosum. For the 50% probability of DAI in the frontal corpus callosum, it is suggested that the strain-based threshold is 0.12 for the MPS, 110 s(-1) for the product of strain and strain rate, and 17% for the CSDM.
机译:这项研究的目的是研究基于大脑应变的阈值,以更好地预测由大鼠大脑上的旋转加速度引起的弥漫性轴索损伤(DAI)。先前开发和验证的大鼠头部有限元模型用于重建26个体内大鼠头部撞击实验。 DAI是通过在矢状面上施加到大鼠头部的高旋转加速度产生的。计算了颅内应变和基于应变的损伤指数,包括最大主应变(MPS),应变与应变率的乘积以及累积应变损伤量度(CSDM)。 DAI的区域特定保守阈值是根据strain体额部,中部和枕部的应变和基于应变的损伤指数进行估算的。实验中观察到的轴突损伤被用来制定损伤风险函数,并根据计算的损伤指数通过二元逻辑回归分析DAI风险。 Logistic回归分析表明,额叶call体中的MPS,应变和应变率的乘积以及CSDM与DAI显着相关。对于额叶体中DAI的概率为50%,建议基于应变的阈值对于MPS为0.12,对于应变和应变率的乘积为110 s(-1),对于CSDM为17%。

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