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In-shoe center of pressure: Indirect force plate vs. direct insole measurement

机译:鞋内压力中心:间接力板与直接鞋垫测量

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Background: In-shoe center of pressure (COP) measurement is essential in biomechanics. COP can be measured directly utilizing pressure-sensitive insoles, or calculated indirectly via force plate-generated data. While the latter does not require the use of additional measurement hardware (shoe insoles), its precision at calculating in-shoe COP has not been determined. Our purpose was to ascertain the precision of force plate in-shoe COP calculations and enhance their accuracy through a mathematical algorithm. Methods: Twelve male students participated in the study. In-shoe COP was measured synchronously via the Pedar-X insole system and AMTI force plates, comparing the measurements of both systems. A mathematical algorithm was created to improve agreement between the systems and comparisons were recalculated. Results: The two methods showed different measurements of in-shoe COP. The medio-lateral (ML) and anterior-posterior (AP) Pearson correlation coefficients between systems were 0.44 ± 0.35 and 0.99 ± 0.01, and the ML and AP RMS errors were 6.3 ± 3.0. mm and 43.0 ± 12.5. mm, respectively. Using a mathematical algorithm, the differences between the measurements of each system could be reduced significantly (all P< 0.001). Conclusions: Without adjustment, force plates give an approximate location of the COP. Using an adjustment model greatly improves the accuracy of the COP trajectory during stance.
机译:背景:鞋内压力中心(COP)的测量在生物力学中至关重要。 COP可以使用压敏鞋垫直接测量,也可以通过测力板生成的数据间接计算。尽管后者不需要使用其他测量硬件(鞋垫),但尚未确定其在计算鞋内COP时的精度。我们的目的是确定力板鞋内COP的计算精度,并通过数学算法提高其准确性。方法:十二名男学生参加了研究。通过Pedar-X鞋垫系统和AMTI测力板同步测量鞋内COP,比较两个系统的测量结果。创建了一种数学算法来改善系统之间的一致性,并重新计算比较值。结果:这两种方法显示出不同的鞋内COP测量值。系统之间的中外侧(ML)和前后(AP)皮尔逊相关系数分别为0.44±0.35和0.99±0.01,并且ML和AP RMS误差为6.3±3.0。毫米和43.0±12.5。毫米。使用数学算法,可以显着减小每个系统的测量值之间的差异(所有P <0.001)。结论:无需调整,测力板即可给出COP的大致位置。使用调整模型可以大大提高姿态期间COP轨迹的准确性。

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