在青少年足球比赛中脑组织应变使用基于云的脑模拟研究平台有限元素头部模型
Colin M Huber1, Declan A Patton1, Kristy B Arbogast1
1R. H. Kraft is a Professor at the Pennsylvania State University in University Park, PA, USA. C. M. Huber completed the research as a PhD candidate at the University of Pennsylvania and Center for Injury Research and Prevention (CIRP), Children's Hospital of Philadelphia (CHOP) in Philadelphia, PA, USA. D. A. Patton is a Senior Scientist at CIRP at CHOP, PA, USA. K. B. Arbogast is the Scientific Director of CIRP at CHOP and Professor at the University of Pennsylvania, PA, USA.
青少年的足球头条会导致大脑疲劳. 这项研究使用有限元 (FE) 模型来分析头部冲击,发现正面头部有更高的线性加速,但类似的脑压力斜头部.
科学领域:
- 生物力学 生物力学
- 神经科学是一个神经科学.
- 运动医学 运动医学
背景情况:
- 足球头可以导致头部冲击和青少年运动员潜在的脑筋疲劳.
- 了解这些冲击的生物力学对于预防伤害至关重要.
研究的目的:
- 为了量化青少年运动员中足球头条造成的大脑应变.
- 使用基于云的有限元素 (FE) 人头模型进行冲击分析.
主要方法:
- 11名青少年运动员 (13-18岁) 每人进行10个足球头部.
- 使用冲击监测口罩 (IMM) 记录了头部的线性加速和角速度.
- 收集的动力学数据应用于大脑模拟研究平台 (BSRP) FE头部模型.
主要成果:
- 额头标题显示的平均峰值线性加速明显高于斜标题 (17.5±0.5g vs 12.3±0.4g).
- 倾斜的头部显示出明显更高的平均峰值角加速 (1431±66 rad/s2与1142±45 rad/s2).
- 额头和斜头 (4.8±1.1%与4.5±1.2%) 的MPS95峰值相似,表明可比的脑组织应变.
结论:
- BSRP FE头部模型显示了模拟现场头部撞击数据的潜力,并减少了计算时间.
- 尽管斜标头的角动力学较高,但峰值脑力应变与正面标头相比.
- 需要进一步的研究来估计来自更严重影响的压力,并根据现实数据验证该模型.
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