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The consistency of ordinary least-squares and generalized least-squares polynomial regression on characterizing the mechanomyographic amplitude versus torque relationship

机译:普通最小二乘和广义最小二乘多项式回归在表征机电距离与转矩关系方面的一致性

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The primary purpose of this study was to examine the consistency of ordinary least-squares (OLS) and generalized least-squares (GLS) polynomial regression analyses utilizing linear, quadratic and cubic models on either five or ten data points that characterize the mechanomyographic amplitude (MMGRMS) versus isometric torque relationship. The secondary purpose was to examine the consistency of OLS and GLS polynomial regression utilizing only linear and quadratic models (excluding cubic responses) on either ten or five data points. Eighteen participants (mean +/- SD age = 24 +/- 4 yr) completed ten randomly ordered isometric step muscle actions from 5% to 95% of the maximal voluntary contraction (MVC) of the right leg extensors during three separate trials. MMGRMS was recorded from the vastus lateralis during the MVCs and each submaximal muscle action. MMGRMS versus torque relationships were analyzed on a subject-by-subject basis using OLS and GLS polynomial regression. When using ten data points, only 33% and 27% of the subjects were fitted with the same model (utilizing linear, quadratic and cubic models) across all three trials for OLS and GLS, respectively. After eliminating the cubic model, there was an increase to 55% of the subjects being fitted with the same model across all trials for both OLS and GLS regression. Using only five data points (instead of ten data points), 55% of the subjects were fitted with the same model across all trials for OLS and GLS regression. Overall, OLS and GLS polynomial regression models were only able to consistently describe the torque-related patterns of response for MMGRMS in 27-55% of the subjects across three trials. Future studies should examine alternative methods for improving the consistency and reliability of the patterns of response for the MMG(RMS) versus isometric torque relationship.
机译:这项研究的主要目的是使用线性,二次和三次模型在五个或十个表征机械谱学振幅的数据点上检验普通最小二乘(OLS)和广义最小二乘(GLS)多项式回归分析的一致性( MMGRMS)与等距扭矩的关系。第二个目的是仅在10个或5个数据点上使用线性和二次模型(不包括三次响应)来检查OLS和GLS多项式回归的一致性。在三个独立的试验中,有18名参与者(平均+/- SD年龄= 24 +/- 4岁)完成了10次随机排序的等距步幅肌肉动作,其动作占右腿伸肌最大自动收缩(MVC)的5%至95%。 MMGRMS是在MVC和每个次最大肌肉动作期间从股外侧肌记录的。使用OLS和GLS多项式回归,逐项分析MMGRMS与扭矩的关系。当使用十个数据点时,在所有三个针对OLS和GLS的试验中,分别只有33%和27%的受试者使用相同的模型(利用线性,二次和三次模型)。在消除三次模型之后,在所有针对OLS和GLS回归的试验中,使用相同模型的受试者增加了55%。仅使用五个数据点(而不是十个数据点),在所有OLS和GLS回归试验中,有55%的受试者采用了相同的模型。总体而言,OLS和GLS多项式回归模型仅能够始终如一地描述三个试验中27-55%的受试者MMGRMS的扭矩相关反应模式。未来的研究应研究替代方法,以提高MMG(RMS)与等距转矩关系的响应模式的一致性和可靠性。

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