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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Modeling brain injury response for rotational velocities of varying directions and magnitudes
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Modeling brain injury response for rotational velocities of varying directions and magnitudes

机译:为不同方向和大小的旋转速度建模脑损伤反应

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An estimated 1.7 million people in the United States sustain a traumatic brain injury (TBI) annually. To investigate the effects of rotational motions on TBI risk and location, this study modeled rotational velocities of five magnitudes and 26 directions of rotation using the Simulated Injury Monitor finite element brain model. The volume fraction of the total brain exceeding a predetermined strain threshold, the Cumulative Strain Damage Measure (CSDM), was investigated to evaluate global model response. To evaluate regional response, this metric was computed relative to individual brain structures and termed the Structure Cumulative Strain Damage Measure (SCSDM). CSDM increased as input magnitude increased and varied with the direction of rotation. CSDM was 0.55-1.7 times larger in simulations with transverse plane rotation compared to those without transverse plane rotation. The largest SCSDM in the cerebrum and brainstem occurred with rotations in the transverse and sagittal planes, respectively. Velocities causing medial rotation of the cerebellum resulted in the largest SCSDM in this structure. For velocities of the same magnitude, injury risk calculated from CSDM varied from 0 to 97% with variations in the direction of rotation. These findings demonstrate injury risk, as estimated by CSDM and SCSDM, is affected by the direction of rotation and input magnitude, and these may be important considerations for injury prediction.
机译:在美国,估计每年有170万人遭受脑外伤(TBI)。为了研究旋转运动对TBI风险和位置的影响,本研究使用模拟伤害监测器有限元脑模型对5个大小和26个旋转方向的旋转速度进行了建模。研究了超过预定应变阈值(累积应变损伤度量(CSDM))的整个大脑的体积分数,以评估整体模型响应。为了评估区域反应,该度量标准是相对于单个大脑结构进行计算的,被称为“结构累积应变损伤测量”(SCSDM)。 CSDM随着输入幅度的增加而增加,并随旋转方向而变化。在没有横向平面旋转的情况下,CSDM在具有横向平面旋转的情况下的仿真结果要大0.55-1.7倍。在大脑和脑干中最大的SCSDM分别发生在横断面和矢状面的旋转中。导致小脑内侧旋转的速度导致此结构中最大的SCSDM。对于相同幅度的速度,根据CSDM计算得出的伤害风险从0到97%随旋转方向的变化而变化。这些发现表明,由CSDM和SCSDM估计的伤害风险受旋转方向和输入幅度的影响,这些可能是伤害预测的重要考虑因素。

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