Health, Physical Activity, and Sports Technology Research Group, Faculty of Education, University of Alicante, 03690 San Vicente del Raspeig, Spain.
Sensors (Basel). 2024 Mar 16;24(6):1903. doi: 10.3390/s24061903.
An observational, repeated measures design was used in this study to assess the validity of the Ergotex Inertial Measurement Unit (IMU) against a 3D motion capture system for measuring trunk, hip, and shoulder angles in ten healthy adult males (38.8 ± 7.3 y, bodyweight 79.2 ± 115.9 kg, body height 179.1 ± 8.1 cm). There were minimal systematic differences between the devices, with the most significant discrepancy being 1.4 degrees for the 80-degree target angle, denoting Ergotex's precision in joint angle measurements. These results were statistically significant ( < 0.001), with predominantly trivial to small effect sizes, indicating high accuracy for clinical and biomechanical applications. Bland-Altman analysis showed Limits of Agreement (LoA) approximately ±2.5 degrees across all angles and positions, with overall LoA ranging from 3.6 to -2.4 degrees, reflecting Ergotex's consistent performance. Regression analysis indicated uniform variance across measurements, with minor heteroscedastic errors producing a negligible underestimation trend of around 0.5 degrees in some instances. In conclusion, the Ergotex IMU is a reliable tool for accurate joint angle measurements. It offers a practical and cost-effective alternative to more complex systems, particularly in settings where precise measurement is essential.
本研究采用观察性、重复测量设计,评估 Ergotex 惯性测量单元(IMU)在测量 10 名健康成年男性(38.8±7.3 岁,体重 79.2±115.9kg,身高 179.1±8.1cm)躯干、髋部和肩部角度时的有效性,与 3D 运动捕捉系统进行对比。两种设备之间存在最小的系统差异,最显著的差异为 80 度目标角度相差 1.4 度,这表明 Ergotex 在关节角度测量方面具有较高的精度。这些结果具有统计学意义(<0.001),主要表现为小到中等的效应大小,表明其在临床和生物力学应用中具有较高的准确性。Bland-Altman 分析显示,所有角度和位置的 LOA 约为±2.5 度,总体 LOA 范围为 3.6 至-2.4 度,反映了 Ergotex 的一致性能。回归分析表明,测量值之间的方差均匀,存在较小的异方差误差,在某些情况下会产生约 0.5 度的可忽略不计的低估趋势。总之,Ergotex IMU 是一种可靠的关节角度测量工具。它提供了一种实用且具有成本效益的替代方案,尤其适用于需要精确测量的环境。