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Sample entropy characteristics of movement for four foot types based on plantar centre of pressure during stance phase

机译:站立阶段基于足底压力中心的四种脚类型的运动的样本熵特征

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Background Motion characteristics of CoP (Centre of Pressure, the point of application of the resultant ground reaction force acting on the plate) are useful for foot type characteristics detection. To date, only few studies have investigated the nonlinear characteristics of CoP velocity and acceleration during the stance phase. The aim of this study is to investigate whether CoP regularity is different among four foot types (normal foot, pes valgus, hallux valgus and pes cavus); this might be useful for classification and diagnosis of foot injuries and diseases. To meet this goal, sample entropy, a measure of time-series regularity, was used to quantify the CoP regularity of four foot types. Methods One hundred and sixty five subjects that had the same foot type bilaterally (48 subjects with healthy feet, 22 with pes valgus, 47 with hallux valgus, and 48 with pes cavus) were recruited for this study. A Footscan? system was used to collect CoP data when each subject walked at normal and steady speed. The velocity and acceleration in medial-lateral (ML) and anterior-posterior (AP) directions, and resultant velocity and acceleration were derived from CoP. The sample entropy is the negative natural logarithm of the conditional probability that a subseries of length m that matches pointwise within a tolerance r also matches at the next point. This was used to quantify variables of CoP velocity and acceleration of four foot types. The parameters r (the tolerance) and m (the matching length) for sample entropy calculation have been determined by an optimal method. Results It has been found that in order to analyze all CoP parameters of velocity and acceleration during the stance phase of walking gait, for each variable there is a different optimal r value. On the contrary, the value m=4 is optimal for all variables. Sample entropies of both velocity and acceleration in AP direction were highly correlated with their corresponding resultant variables for r>0.91. The sample entropy of the velocity in AP direction was moderately correlated with the one of the acceleration in the same direction (r≥0.673), as well as with the resultant acceleration (r≥0.660). The sample entropy of resultant velocity was moderately correlated with the one of the acceleration in AP direction, as well as with the resultant acceleration (for the both r≥0.689). Moderate correlations were found between variables for the left foot and their corresponding variables for the right foot. Sample entropies of AP velocity, resultant velocity, AP acceleration, and resultant acceleration of the right foot as well as AP velocity and resultant velocity of the left foot were, respectively, significantly different among the four foot types. Conclusions It can be concluded that the sample entropy of AP velocity (or the resultant velocity) of the left foot, ML velocity, resultant velocity, ML acceleration and resultant acceleration could serve for evaluation of foot types or selection of appropriate footwear.
机译:CoP的背景运动特性(压力中心,作用在板上的地面反作用力的施加点)对于脚型特性检测很有用。迄今为止,只有很少的研究研究了站立阶段CoP速度和加速度的非线性特征。这项研究的目的是调查CoP规律是否在四种脚型(正常脚,外翻,外翻和外翻)中有所不同。这可能对脚部受伤和疾病的分类和诊断很有用。为了实现此目标,使用样本熵(一种衡量时间序列规律性的方法)来量化四种脚型的CoP规律性。方法招募了165名双侧相同脚型的受试者(48只健康足,22只外翻足,47只外翻足,48只长足比)。脚踏扫描?当每个受试者以正常和稳定的速度行走时,该系统用于收集CoP数据。内侧-外侧(ML)和前后(AP)方向的速度和加速度以及合成的速度和加速度均来自CoP。样本熵是条件概率的负自然对数,该条件概率的长度为m的子系列在容差r内按点匹配也与下一个点匹配。这用于量化四种脚型的CoP速度和加速度变量。通过最佳方法确定了用于样本熵计算的参数r(公差)和m(匹配长度)。结果发现,为了分析步行步态站立阶段速度和加速度的所有CoP参数,每个变量都有一个不同的最佳r值。相反,值m = 4对于所有变量都是最佳的。沿AP方向的速度和加速度的样本熵与它们相应的结果变量高度相关,r> 0.91。 AP方向上的速度的样本熵与同一方向上的加速度之一(r≥0.673)和合成加速度(r≥0.660)适度相关。合成速度的样本熵与AP方向的加速度之一以及合成加速度(两者r均≥0.689)适度相关。在左脚的变量和右脚的相应变量之间发现了适度的相关性。在这四种脚类型中,AP速度,合速度,AP加速度和右脚合加速度以及左脚的AP速度和合速度的样本熵分别显着不同。结论可以得出结论,左脚AP速度(或合成速度),ML速度,合成速度,ML加速度和合成加速度的样本熵可用于评估脚的类型或选择合适的鞋类。

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