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通过轮椅使用者的手轮推进力输出预测能量消耗。

Predicting energy expenditure through hand rim propulsion power output in individuals who use wheelchairs.

机构信息

Department of Kinesiology, Recreation, and Sport Studies, University of Tennessee, Knoxville, Tennessee, USA.

出版信息

Br J Sports Med. 2014 Jul;48(13):1048-53. doi: 10.1136/bjsports-2014-093540. Epub 2014 May 13.

Abstract

AIM

To examine the relationship between hand rim propulsion power and energy expenditure (EE) during wheelchair wheeling and to investigate whether adding other variables to the model could improve on the prediction of EE.

METHODS

Individuals who use manual wheelchairs (n=14) performed five different wheeling activities in a wheelchair with a PowerTap power meter hub built into the right rear wheel. Activities included wheeling on a smooth, level surface at three different speeds (4.5, 5.5 and 6.5 km/h), wheeling on a rubberised track at one speed (5.5 km/h) and wheeling on a sidewalk course that included uphill and downhill segments at a self-selected speed. EE was measured using a portable indirect calorimetry system. Stepwise linear regression was performed to predict EE from power output variables. A repeated-measures analysis of variance was used to compare the measured EE to the estimates from the power models. Bland-Altman plots were used to assess the agreement between the criterion values and the predicted values.

RESULTS

EE and power were significantly correlated (r=0.694, p<0.001). Regression analysis yielded three significant prediction models utilising measured power; measured power and speed; and measured power, speed and heart rate. No significant differences were found between measured EE and any of the prediction models.

CONCLUSION

EE can be accurately and precisely estimated based on hand rim propulsion power. These results indicate that power could be used as a method to assess EE in individuals who use wheelchairs.

摘要

目的

研究手轮推进力与轮椅推行时能量消耗(EE)之间的关系,并探讨在模型中加入其他变量是否能提高 EE 的预测能力。

方法

使用功率计轮毂的轮椅将 14 名使用手动轮椅的个体安置在一个右后轮上,以 4.5、5.5 和 6.5km/h 的三种不同速度在光滑、水平的表面上进行五次不同的轮椅推行活动,以 5.5km/h 的速度在橡胶轨道上推行,以及以自我选择的速度在包括上坡和下坡路段的人行道上推行。使用便携式间接测热系统测量 EE。采用逐步线性回归法从功率输出变量预测 EE。采用重复测量方差分析比较功率模型测量的 EE。采用 Bland-Altman 图评估标准值和预测值之间的一致性。

结果

EE 和功率呈显著相关(r=0.694,p<0.001)。回归分析产生了三个利用实测功率的显著预测模型;利用实测功率、速度和心率的预测模型。实测 EE 与任何预测模型之间均无显著差异。

结论

可以根据手轮推进力准确而精确地估计 EE。这些结果表明,功率可以作为评估使用轮椅的个体 EE 的一种方法。

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