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一次致命的极限跳伞导致的骨骼创伤:一个显示在极端垂直减速情况下双脚先着地的影响的案例研究。

The skeletal trauma resulting from a fatal B.A.S.E jump: A case study showing the impact of landing feet-first under extreme vertical deceleration.

作者信息

Rowbotham Samantha K, Blau Soren, Hislop-Jambrich Jacqueline

机构信息

Department of Forensic Medicine, Monash University, 65 Kavanagh St., Southbank, Victoria 3006, Australia.

Victorian Institute of Forensic Medicine, 65 Kavanagh St., Southbank, Victoria 3006, Australia; Department of Forensic Medicine, Monash University, 65 Kavanagh St., Southbank, Victoria 3006, Australia.

出版信息

Forensic Sci Int. 2018 May;286:e20-e27. doi: 10.1016/j.forsciint.2018.02.020. Epub 2018 Feb 27.

Abstract

The term 'B.A.S.E jump' refers to jumping from a building, antenna, span (i.e., bridge) or earth (i.e., cliff) structure, and parachuting to the ground. There are numerous hazards associated with B.A.S.E jumps which often result in injury and, occasionally, fatality. This case report details the skeletal trauma resulting from a fatal B.A.S.E jump in Australia. In this case, the jumper impacted the ground from a fall of 439m in a feet-first landing position, as a result of a partially deployed parachute, under extreme vertical deceleration. Skeletal trauma was analyzed using full-body post mortem computed tomography (PMCT) and contextual information related to the circumstances of the jump as reported by the Coroner. Trauma to 61 skeletal elements indicates the primary impact was to the feet (i.e., feet-first landing), followed by an anterior impact to the body (i.e., fall forwards). Details of the individual fracture morphologies indicate the various forces and biomechanics involved in this fall event. This case presents the types of fractures that result from a B.A.S.E jump, and highlights the value of using PMCT and coronial data as tools to augment skeletal trauma interpretations.

摘要

“高楼、天线、跨度(如桥梁)或地面(如悬崖)跳伞”(B.A.S.E跳伞)一词是指从建筑物、天线、跨度结构(即桥梁)或地面结构(即悬崖)跳下,并使用降落伞降落到地面。B.A.S.E跳伞存在许多危险,常常导致受伤,偶尔还会造成死亡。本病例报告详细介绍了澳大利亚一起致命B.A.S.E跳伞导致的骨骼创伤情况。在该病例中,跳伞者由于降落伞部分展开,在极端垂直减速的情况下,以脚先着地的姿势从439米高处坠落并撞击地面。使用全身死后计算机断层扫描(PMCT)以及验尸官报告的与跳伞情况相关的背景信息对骨骼创伤进行了分析。61个骨骼部位的创伤表明主要撞击部位是脚部(即脚先着地),随后身体受到前方撞击(即向前摔倒)。各个骨折形态的细节表明了此次坠落事件中涉及的各种力和生物力学情况。本病例展示了B.A.S.E跳伞导致的骨折类型,并强调了使用PMCT和验尸官数据作为辅助骨骼创伤解读工具的价值。

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