Nana Alisa, Slater Gary J, Stewart Arthur D, Burke Louise M
Dept. of Sports Nutrition, Australian Institute of Sport, Canberra, Australia.
Int J Sport Nutr Exerc Metab. 2015 Apr;25(2):198-215. doi: 10.1123/ijsnem.2013-0228. Epub 2014 Jul 14.
Dual energy X-ray absorptiometry (DXA) is rapidly becoming more accessible and popular as a technique to monitor body composition, especially in athletic populations. Although studies in sedentary populations have investigated the validity of DXA assessment of body composition, few studies have examined the issues of reliability in athletic populations and most studies which involve DXA measurements of body composition provide little information on their scanning protocols. This review presents a summary of the sources of error and variability in the measurement of body composition by DXA, and develops a theoretical model of best practice to standardize the conduct and analysis of a DXA scan. Components of this protocol include standardization of subject presentation (subjects rested, overnight-fasted and in minimal clothing) and positioning on the scanning bed (centrally aligned in a standard position using custom-made positioning aids) as well as manipulation of the automatic segmentation of regional areas of the scan results. Body composition assessment implemented with such protocol ensures a high level of precision, while still being practical in an athletic setting. This ensures that any small changes in body composition are confidently detected and correctly interpreted. The reporting requirements for studies involving DXA scans of body composition include details of the DXA machine and software, subject presentation and positioning protocols, and analysis protocols.
双能X线吸收法(DXA)作为一种监测身体成分的技术,正迅速变得更加普及和受欢迎,尤其是在运动员群体中。尽管针对久坐人群的研究已经探讨了DXA评估身体成分的有效性,但很少有研究考察运动员群体中DXA测量的可靠性问题,而且大多数涉及DXA测量身体成分的研究几乎没有提供关于其扫描方案的信息。本综述总结了DXA测量身体成分时误差和变异性的来源,并建立了一个最佳实践的理论模型,以规范DXA扫描的操作和分析。该方案的组成部分包括受试者状态标准化(受试者休息、隔夜禁食且穿着最少的衣物)以及在扫描床上的定位(使用定制的定位辅助工具在标准位置居中对齐),还有对扫描结果区域自动分割的操作。采用该方案进行身体成分评估可确保高精度,同时在运动环境中仍具有实用性。这能确保有信心地检测到身体成分的任何微小变化并进行正确解读。涉及DXA扫描身体成分的研究报告要求包括DXA机器和软件的详细信息、受试者状态和定位方案以及分析方案。