首页> 外文期刊>Journal of biomechanical engineering. >Distribution of Brain Strain in the Cerebrum for Laboratory Impacts to Ice Hockey Goaltender Masks
【24h】

Distribution of Brain Strain in the Cerebrum for Laboratory Impacts to Ice Hockey Goaltender Masks

机译:大脑脑菌株的分布对冰球守门员面具的实验室影响

获取原文
获取原文并翻译 | 示例
           

摘要

Concussions are among the most common injuries sustained by goaltenders. Concussive injuries are characterized by impairment to neurological function which can affect many different brain regions. Understanding how different impact loading conditions (event type and impact site) affect the brain tissue response may help identify what kind of impacts create a high risk of injury to specific brain regions. The purpose of this study was to examine the influence of different impact conditions on the distribution of brain strain for ice hockey goaltender impacts. An instrumented headform was fitted with an ice hockey goaltender mask and impacted under a protocol which was developed using video analysis of real world ice hockey goaltender concussions for three different impact events (collision, puck, and fall). The resulting kinematic response served as input into the University College Dublin Brain Trauma Model (UCDBTM), which calculated maximum principal strain (MPS) in the cerebrum. Strain subsets were then determined and analyzed. Resulting peak strains (0.124-0.328) were found to be within the range for concussion reported in the literature. The results demonstrated that falls and collisions produced larger strain subsets in the cerebrum than puck impacts which is likely a reflection of longer impact duration for falls and collisions than puck impacts. For each impact event, impact site was also found to produce strain subsets of varying size and configuration. The results of this study suggest that the location and number of brain regions which can be damaged depend on the loading conditions of the impact.
机译:脑震荡是守门员持续的最常见的伤害之一。巨大损伤的特点是对神经功能的损伤,这可能影响许多不同的大脑区域。了解如何影响脑组织反应的不同影响条件(事件类型和撞击遗址)可能有助于确定有什么样的影响对特定脑区造成的高风险。本研究的目的是检验不同影响条件对冰球靶标的脑菌株分布的影响。仪表式的头部配有冰球守门员面具,并在一个协议下受到影响,该协议是使用真实世界冰球守门员脑乐队的视频分析,为三种不同的影响事件(碰撞,冰球和摔倒)。由此产生的运动响应担任进入大学学院都柏林脑创伤模型(UCDBTM)的投入,其计算大脑中的最大主要菌株(MPS)。然后确定并分析应变子集。发现所得峰菌株(0.124-0.328)在文献中报告的脑震荡范围内。结果表明,跌落和碰撞产生的脑筋中的较大菌株亚群而不是冰球影响,这可能反映出落下和碰撞的较长持续时间而不是冰球影响。对于每个影响事件,还发现影响现场产生不同尺寸和配置的应变子集。本研究结果表明,可能损坏的脑区的位置和数量取决于撞击的负载条件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号