Literature DB >> 29769832

Validity and Reliability of the PowerTap P1 Pedals Power Meter.

Jesús G Pallarés1, José Ramón Lillo-Bevia1.   

Abstract

To validate the new PowerTap P1® pedals power meter (PP1), thirty-three cyclists performed 12 randomized and counterbalanced graded exercise tests (100-500 W), at 70, 85 and 100 rev·min-1 cadences, in seated and standing positions. A scientific SRM system and a pair of PP1 pedals continuously recorded cadence and power output data. Significantly lower power output values were detected for the PP1 compared to the SRM for all workloads, cadences, and pedalling conditions (2-10 W, p < 0.05), except for the workloads ranged between 150 W to 350 W at 70 rev·min-1 in seated position (p > 0.05). Strong Spearman's correlation coefficients were found between the power output values recorded by both power meters in a seated position, independently from the cadence condition (rho ≥ 0.987), although slightly lower concordance was found for the standing position (rho = 0.927). The mean error for power output values were 1.2%, 2.7%, 3.5% for 70, 85 and 100 rev·min-1, respectively. Bland-Altman analysis revealed that PP1 pedals underestimate the power output data obtained by the SRM device in a directly proportional manner to the cyclist's cadence (from -2.4 W to -7.3 W, rho = 0.999). High absolute reliability values were detected in the PP1 pedals (150-500 W; CV = 2.3%; SEM < 1.0 W). This new portable power meter is a valid and reliable device to measure power output in cyclists and triathletes for the assessment, training and competition using their own bicycle, although caution should be exercised in the interpretation of the results due to the slight power output underestimation of the PP1 pedals when compared to the SRM system and its dependence on both pedalling cadence and cyclist's position (standing vs. seated).

Entities:  

Keywords:  Cycling; cycle ergometer; mobile power meter; power output; testing

Mesh:

Year:  2018        PMID: 29769832      PMCID: PMC5950748     

Source DB:  PubMed          Journal:  J Sports Sci Med        ISSN: 1303-2968            Impact factor:   2.988


  37 in total

1.  Evaluation of the Monark Wingate ergometer by direct measurement of resistance and velocity.

Authors:  B R MacIntosh; S N Bryan; P Rishaug; S R Norris
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2.  Differences in pedalling technique between road cyclists of different competitive levels.

Authors:  Juan García-López; Sergio Díez-Leal; Ana Ogueta-Alday; Josu Larrazabal; José A Rodríguez-Marroyo
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Authors:  W Bertucci; S Duc; V Villerius; J N Pernin; F Grappe
Journal:  Int J Sports Med       Date:  2005-12       Impact factor: 3.118

Review 4.  Statistical methods for assessing measurement error (reliability) in variables relevant to sports medicine.

Authors:  G Atkinson; A M Nevill
Journal:  Sports Med       Date:  1998-10       Impact factor: 11.136

5.  Effect of gradient on cycling gross efficiency and technique.

Authors:  Marco Arkesteijn; Simon A Jobson; James Hopker; Louis Passfield
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9.  Accuracy of SRM and power tap power monitoring systems for bicycling.

Authors:  Andrew S Gardner; Shaun Stephens; David T Martin; Evan Lawton; Hamilton Lee; David Jenkins
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