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Models for temporal-spatial parameters in walking with cadence ratio as the independent variable

机译:踏频比为自变量的步行时空参数模型

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摘要

Accurate models that describe temporal-spatial parameters are desirable in gait estimation and rehabilitation. This study aimed to explore simple but relatively accurate models to describe stride length (SL), speed (SP) and walk ratio (WR) at various cadences. Twenty-four able-bodied participants (16 in a test group and 8 in a validation group) walked at seven cadence ratios (CRs). The individual and group mean SL, SP and WR were studied. Suitable temporal-spatial model structures were proposed and used to approximate the individual SL, SP and WR at various CRs. After the temporal-spatial model structures were found to be feasible, the general temporal-spatial models were analysed using the test group mean SL, SP and WR. Accuracy was assessed using the validation group mean values. Individual approximation accuracies showed that the proposed model structure deduced from the linear SL model was suitable for WR approximation. The linear, deduced quadratic and power functions approximated the individual SL, SP and WR, respectively, with high accuracy. Based on the test group mean SL, SP and WR, the general temporal-spatial models were obtained and produced comparable approximation accuracies in the validation group. The general temporal-spatial models predicted well the individual gait parameters with similar individual errors for both groups. These temporal-spatial models clearly describe SL, SP and especially WR at various cadences. They provide accurate reference data for gait estimation and have potential to guide speed modulation in robot-assisted gait rehabilitation. >Graphical abstractTwenty-four able-bodied participants (16 in test group and 8 in validation group) walked at seven cadence ratios (CRs), with the individual and group mean stride length (SL), speed (SP) and walk ratio (WR) studied. This work selected the cadence ratio as the independent variable and yielded general temporal-spatial models based on the test group data, which were a linear model for SL, a quadratic function for SP and a power function for WR. The general temporal-spatial model produced comparable approximation accuracies in the validation group. Clearly describing SL, SP and especially WR at various cadences, these temporal-spatial models provide accurate references for gait estimation and have the potential to guide speed modulation in robot-assisted gait rehabilitation. Approximation of the group mean temporal-spatial parameters at seven cadences. Solid lines in parts (a, b): the general linear SL model. Solid lines in (c, d): the general quadratic SP model. Solid lines in (e, f): the general WR model. Dots and stars in (a, c, e): the individual and group mean values for the test group. Dots and stars in (b, d, f): the individual and group mean values for the validation group.
机译:在步态估计和康复中,需要描述时空参数的准确模型。这项研究旨在探索简单但相对准确的模型,以描述各种节奏下的步幅(SL),速度(SP)和步行比(WR)。 24名身体健全的参与者(测试组中16名,验证组中8名)以7个韵律比(CR)行走。研究了个人和群体的平均SL,SP和WR。提出了合适的时空模型结构,并将其用于逼近各个CR处的单个SL,SP和WR。在发现时空模型结构可行之后,使用测试组平均值SL,SP和WR分析一般时空模型。使用验证组平均值评估准确性。个体逼近精度表明,从线性SL模型推导的模型结构适合WR逼近。线性,推导的二次函数和幂函数分别以较高的精度逼近单个SL,SP和WR。根据测试组的平均SL,SP和WR,获得了通用的时空模型,并在验证组中产生了可比的近似精度。一般的时空模型可以很好地预测个体步态参数,两组的个体误差相似。这些时空模型清楚地描述了SL,SP尤其是WR在各种节奏下的WR。它们为步态估计提供了准确的参考数据,并有可能指导机器人辅助步态康复中的速度调制。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!-无花果/图形|无花果/替代品/图形模式=“ anchored” m1-> <!-标题a7->二十四名健壮的参与者(测试组中有16名,验证组中有8名)以7个节奏比行走(CR),并研究了个人和团体的平均步幅长度(SL),速度(SP)和步行比(WR)。这项工作选择了踏频比作为自变量,并根据测试组数据得出了一般的时空模型,这些模型是SL的线性模型,SP的二次函数和WR的幂函数。通用时空模型在验证组中产生了可比的近似精度。这些时空模型清楚地描述了SL,SP尤其是WR时的WR,这些时空模型为步态估计提供了准确的参考,并有可能指导机器人辅助步态康复中的速度调制。该组的平均时空参数为七个节奏。零件中的实线(a,b):常规线性SL模型。 (c,d)中的实线:一般的二次SP模型。 (e,f)中的实线:常规WR模型。 (a,c,e)中的点和星:测试组的个体和组平均值。 (b,d,f)中的点和星号:验证组的个体和组平均值。

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