C.E. Coltman , A. Powell , S.N. Laing , R.A. Davidson , M.A. Jaffrey , A. Zhou , M.R. Pickering , S.J. Summers
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引用次数: 0
摘要
为了优化人体装甲系统对士兵的保护,有必要了解重要胸腹器官的边界,以满足覆盖要求。然而,现有的器官边界识别方法成本高、耗时长,限制了在士兵群体中的广泛应用。本研究旨在评估一种新方法,即使用三维器官模型从低剂量平面 X 射线和人体躯干的三维外表面扫描中识别重要器官的边界。结果表明,虽然可以使用放置在 X 射线图像上的三维器官模型模板来重建三维器官,但从重建器官中获得的边界数据(与每个器官的大小和位置有关)与核磁共振器官数据有很大差异。不同器官之间的差异程度各不相同。最准确的解剖边界是心脏的左、右和下边界,以及肝脏和脾脏的侧边界。对数据的目测表明,18 个器官模型中有 11 个成功地整合到了参与者表面扫描的三维空间中。这些结果表明,如果进一步完善和评估这种方法,它有可能被用作估算人体装甲覆盖要求的工具。
Can thoraco-abdominal organ boundaries be accurately determined from X-ray and anthropometric surface scans? Implications for body armour system coverage and design
To optimise soldier protection within body armour systems, knowledge of the boundaries of essential thoraco-abdominal organs is necessary to inform coverage requirements. However, existing methods of organ boundary identification are costly and time consuming, limiting widespread adoption for use on soldier populations. The aim of this study was to evaluate a novel method of using 3D organ models to identify essential organ boundaries from low dose planar X-rays and 3D external surface scans of the human torso. The results revealed that, while possible to reconstruct 3D organs using template 3D organ models placed over X-ray images, the boundary data (relating to the size and position of each organ) obtained from the reconstructed organs differed significantly from MRI organ data. The magnitude of difference varied between organs. The most accurate anatomical boundaries were the left, right, and inferior boundaries of the heart, and lateral boundaries for the liver and spleen. Visual inspection of the data demonstrated that 11 of 18 organ models were successfully integrated within the 3D space of the participant's surface scan. These results suggest that, if this method is further refined and evaluated, it has potential to be used as a tool for estimating body armour coverage requirements.
期刊介绍:
Applied Ergonomics is aimed at ergonomists and all those interested in applying ergonomics/human factors in the design, planning and management of technical and social systems at work or leisure. Readership is truly international with subscribers in over 50 countries. Professionals for whom Applied Ergonomics is of interest include: ergonomists, designers, industrial engineers, health and safety specialists, systems engineers, design engineers, organizational psychologists, occupational health specialists and human-computer interaction specialists.