首页> 外文会议>17th World Congress on Ergonomics(第十七届国际人类工效学大会)论文集 >Mitigating Anthropometric Measurement Variation: Applied Tolerances for Static Anthropometric Landmark Digitizations in Three-Dimensional Space
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Mitigating Anthropometric Measurement Variation: Applied Tolerances for Static Anthropometric Landmark Digitizations in Three-Dimensional Space

机译:缓解人体测量的变化:三维空间中静态人体测量地标数字化的应用公差

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The quality of repeated digitizations of static anthropometric landmarks in three-dimensional space using an electromechanical approach should arguably include investigating digitization behavior and performance through n iterations in addition to defining the contributing factors that are inherent in digitizing 3D landmarks. An empirical study was performed in which repeated digitizations of five upper extremity landmarks (Lateral Humeral Epicondyle, Medial Humeral Epicondyle, Radiale, Radial Styloid, Ulnar Styloid) were captured using an electromechanical approach on a healthy human subject. Results show that observers exhibited spatial variation in three-dimensions for all five landmarks. Observer-specific palpation behavior and interpretation of anatomical features are posited as agents to landmark digitization variability in three-dimensional space. Post-hoc dimensions were created using the digitized landmarks to test the impact individual landmark variation had on resultant dimensions. Tolerances in digitization variation for each landmark were created in accordance to their respective contribution to dimensional variation and the prospective consequence this variation would have on a variety of anthropometric applications (such as biomechanical modeling, product design, design of the built environment, and the design of personal protective equipment). Results demonstrate a wide variety of requisite tolerances when applying anthropometric measurements.
机译:使用机电方法在三维空间中对静态人体测量学地标进行重复数字化的质量,除了定义3D地标数字化固有的影响因素外,还应包括通过n次迭代研究数字化行为和性能。进行了一项实验研究,其中在健康的人类受试者上使用机电方法捕获了五个上肢界标(侧肱骨上con,内侧肱骨上con,骨,Rad骨茎突,尺骨茎突)的重复数字化。结果表明,观察者对所有五个地标均表现出三维空间变化。观察者特定的触诊行为和解剖特征的解释被认为是三维空间中标志性数字化变异性的媒介。使用数字化地标创建事后尺寸,以测试各个地标变化对最终尺寸的影响。根据每个界标对尺寸变化的贡献以及该变化对各种人体测量学应用(例如生物力学建模,产品设计,建筑环境设计和设计)的预期结果,创建了每个地标数字化变化的容差。个人防护设备)。结果表明,在进行人体测量时,各种必要的公差。

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