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Brain pressure responses in translational head impact: a dimensional analysis and a further computational study

机译:平移式头部撞击中的脑压反应:一个维​​度分析和进一步的计算研究

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Brain pressure responses resulting from translational head impact are typically related to focal injuries at the coup and contrecoup sites. Despite significant efforts characterizing brain pressure responses using experimental and modeling approaches, a thorough investigation of the key controlling parameters appears lacking. In this study, we identified three parameters specific and important for brain pressure responses induced by isolated linear acceleration via a dimensional analysis: itself (magnitude and directionality), brain size and shape. These findings were verified using our recently developed Dartmouth Head Injury Model (DHIM). Applying to the rigid skull, we found that the temporal profile of the given directly determined that of pressure. Brain pressure was also found to be linearly proportional to brain size and dependent on impact direction. In addition, we investigated perturbations to brain pressure responses as a result of non-rigid skull deformation. Finally, DHIM pressure responses were quantitatively validated against two representative cadaveric head impacts (categorized as "good" to "excellent" in performance). These results suggest that both the magnitude and directionality of as well as brain size and shape should be considered when interpreting brain pressure responses. Further, a model validated against pressure responses alone is not sufficient to ensure its fidelity in strain-related responses. These findings provide important insights into brain pressure responses in translational head impact and the resulting risk of pressure-induced injury. In addition, they establish the feasibility of creating a pre-computed atlas for real-time tissue-level pressure responses without a direct simulation in the future.
机译:由平移式头部撞击引起的脑压反应通常与政变和对峙政变部位的局灶性损伤有关。尽管使用实验和建模方法为表征脑压反应做出了巨大努力,但似乎仍缺乏对关键控制参数的透彻研究。在这项研究中,我们通过尺寸分析确定了对于孤立的线性加速度引起的脑压反应而言特定且重要的三个参数:自身(大小和方向性),大脑大小和形状。使用我们最近开发的达特茅斯头部受伤模型(DHIM)验证了这些发现。应用于刚性头骨,我们发现给定的时间轮廓直接决定了压力。还发现脑压与脑大小成线性比例,并取决于撞击方向。此外,我们调查了由于非刚性颅骨变形而引起的对脑压反应的扰动。最后,针对两个有代表性的尸体头部撞击(在性能上分类为“好”至“优秀”)对DHIM压力响应进行了定量验证。这些结果表明,在解释脑压力反应时,应同时考虑其大小和方向性以及大脑的大小和形状。此外,仅针对压力响应进行验证的模型不足以确保其在应变相关响应中的保真度。这些发现为平移式头部撞击中的脑压反应以及因压力引起的损伤的风险提供了重要的见识。此外,他们建立了为实时组织水平压力响应创建预先计算的地图集的可行性,而无需将来进行直接仿真。

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