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职业棒球捕手和裁判员的脑震荡:现场数据和棒球撞击实验。

Concussions experienced by Major League Baseball catchers and umpires: field data and experimental baseball impacts.

机构信息

School of Biomedical Engineering & Sciences, Virginia Tech-Wake Forest University, 440 ICTAS Building, Stanger Street, Blacksburg, VA 24061, USA.

出版信息

Ann Biomed Eng. 2012 Jan;40(1):150-9. doi: 10.1007/s10439-011-0412-4. Epub 2011 Oct 20.

Abstract

Some reports have shown that head injuries in baseball may comprise up to 18.5% of all competitive sports-related head injuries. The objective of this study was to evaluate the response of catcher and umpire masks to impacts at these different regions to discover the impact conditions that represent the greatest risk of injury. A series of 10 events in which a catcher or umpire in Major League Baseball, who experienced a foul ball to the mask that resulted in a concussion, were analyzed through video and data on pitch characteristics. It was found that the impacts were distributed across the face, and the median plate speed was approximately 38 m/s (84 mph). To determine the relative severity of each identified impact location, an instrumented Hybrid III head outfitted with a catcher or umpire mask was impacted with baseballs. Testing at 27 and 38 m/s (60 and 84 mph) suggested that impacts to the center-eyebrow and chin locations were the most severe. Peak linear and rotational accelerations were found to be lower than the suggested injury thresholds. While impacts to a mask result in head accelerations which are near or below levels commonly associated with the lower limits for head injury, the exact injury mechanism is unclear, as concussions are still experienced by the mask wearers.

摘要

一些报告表明,在所有与竞技运动相关的头部损伤中,棒球运动造成的头部损伤可能占到 18.5%。本研究的目的是评估捕手和裁判面罩在这些不同区域受到冲击时的反应,以发现最容易造成伤害的冲击条件。对 10 个事件进行了分析,这些事件涉及美国职棒大联盟的捕手或裁判在面罩处被击中了一个界外球,导致脑震荡,通过视频和投球特征的数据进行了分析。结果发现,冲击分布在面部各处,中值板速约为 38 米/秒(84 英里/小时)。为了确定每个识别出的冲击位置的相对严重程度,用带有捕手或裁判面罩的Hybrid III 头部模型进行了撞击测试,使用的球是棒球。在 27 米/秒(60 英里/小时)和 38 米/秒(84 英里/小时)的测试中,发现冲击中心眉和下巴位置最严重。发现线性和旋转加速度峰值低于建议的损伤阈值。虽然面罩受到冲击会导致头部加速度接近或低于通常与头部损伤下限相关的水平,但确切的损伤机制尚不清楚,因为戴面罩的人仍然会出现脑震荡。

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