Literature DB >> 30531413

Methodological Approaches and Related Challenges Associated With the Determination of Critical Power and Curvature Constant.

Daniel Muniz-Pumares1, Bettina Karsten2, Christoph Triska3,4, Mark Glaister5.   

Abstract

Muniz-Pumares, D, Karsten, B, Triska, C, and Glaister, M. Methodological approaches and related challenges associated with the determination of critical power and W'. J Strength Cond Res 33(2): 584-596, 2019-The relationship between exercise intensity and time to task failure (P-T relationship) is hyperbolic, and characterized by its asymptote (critical power [CP]) and curvature constant (W'). The determination of these parameters is of interest for researchers and practitioners, but the testing protocol for CP and W' determination has not yet been standardized. Conventionally, a series of constant work rate (CWR) tests to task failure have been used to construct the P-T relationship. However, the duration, number, and recovery between predictive CWR and the mathematical model (hyperbolic or derived linear models) are known to affect CP and W'. Moreover, repeating CWR may be deemed as a cumbersome and impractical protocol. Recently, CP and W' have been determined in field and laboratory settings using time trials, but the validity of these methods has raised concerns. Alternatively, a 3-minute all-out test (3MT) has been suggested, as it provides a simpler method for the determination of CP and W', whereby power output at the end of the test represents CP, and the amount of work performed above this end-test power equates to W'. However, the 3MT still requires an initial incremental test and may overestimate CP. The aim of this review is, therefore, to appraise current methods to estimate CP and W', providing guidelines and suggestions for future research where appropriate.

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Year:  2019        PMID: 30531413     DOI: 10.1519/JSC.0000000000002977

Source DB:  PubMed          Journal:  J Strength Cond Res        ISSN: 1064-8011            Impact factor:   3.775


  14 in total

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Authors:  Mark Kramer; E J Thomas; R W Pettitt
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5.  Relationship Between the Critical Power Test and a 20-min Functional Threshold Power Test in Cycling.

Authors:  Bettina Karsten; Luca Petrigna; Andreas Klose; Antonino Bianco; Nathan Townsend; Christoph Triska
Journal:  Front Physiol       Date:  2021-01-22       Impact factor: 4.566

Review 6.  Using Field Based Data to Model Sprint Track Cycling Performance.

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Review 7.  Power profiling and the power-duration relationship in cycling: a narrative review.

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Journal:  Eur J Appl Physiol       Date:  2021-10-27       Impact factor: 3.078

Review 8.  Influence and Mechanisms of Action of Environmental Stimuli on Work Near and Above the Severe Domain Boundary (Critical Power).

Authors:  Normand A Richard; Michael S Koehle
Journal:  Sports Med Open       Date:  2022-03-28

9.  Calculation of Critical Speed from Raw Training Data in Recreational Marathon Runners.

Authors:  Barry Smyth; Daniel Muniz-Pumares
Journal:  Med Sci Sports Exerc       Date:  2020-12

10.  The ramp and all-out exercise test to determine critical power: validity and robustness to manipulations in body position.

Authors:  Richie P Goulding; Denise M Roche; Simon Marwood
Journal:  Eur J Appl Physiol       Date:  2021-06-18       Impact factor: 3.078

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