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首页> 外文期刊>American journal of human biology: the official journal of the Human Biology Council >3D anthropometric assessment and perception of male body morphology in relation to physical strength
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3D anthropometric assessment and perception of male body morphology in relation to physical strength

机译:3D与体力相关的人体形态的观察和对男性身体形态的感知

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Objectives The assessment of men's physical strength is an important part of human social perception, for which observers rely on different kinds of cues. However, besides previous studies being limited in considerable ways, as yet there is no comprehensive investigation of a range of somatometric measures in relation to both objectively measured and observer-perceived physical strength using valid stimuli. Methods We examined observer-perceptions of physical strength from 3D body scans of n = 165 men, the usage and validity of somatometric measures as cues to strength, differences between strength ratings from stimuli presented on computer monitors vs in real-life size using a projector, and between male and female observers. Results A medium-sized correlation between measured and perceived strength was found, partly mediated by target men's chest-to-hip ratio, body density, ankle girth, height, upper arm, and forearm girth. No significant differences between men's and women's strength perceptions or the method of stimuli presentation (computer monitor vs projector) emerged. Conclusions Our findings suggest that men's physical strength can be assessed with moderate accuracy from 3D body models and that some somatometric measures represent valid cues, which were used by observers, positively predicting both measured and perceived physical strength.
机译:目标对男性的体力评估是人类社会知识的重要组成部分,观察员依赖于不同种类的线索。然而,除了以前的研究以相当大的方式受到限制,目前还没有使用有效刺激的客观测量和观察者感知的体力的一系列占地测量措施的全面调查。方法研究了N = 165人的3D身体扫描的体力观察者的观察者,尺度测量的使用和有效性作为强度的提示,计算机监测器上刺激的强度评级与实际尺寸的刺激差异的差异,男女观察者之间。结果发现测量和感知强度之间的中等大小相关性,部分介导的目标男性的胸部到臀部比率,体密度,脚踝周长,高度,上臂和前臂周长。男性和女性的强度感知或刺激演示方法(计算机监视器VS投影仪)之间没有显着差异。结论我们的研究结果表明,男性的物理力量可以通过3D身体模型的中等精度来评估,并且一些躯体测量措施代表了观察者使用的有效提示,肯定地预测测量和感知的体力。

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