Effect of the Fran CrossFit Workout on Oxygen Uptake Kinetics, Energetics, and Postexercise Muscle Function in Trained CrossFitters

Author:

Rios Manoel12ORCID,Becker Klaus Magno12ORCID,Monteiro Ana Sofia12ORCID,Fonseca Pedro2ORCID,Pyne David B.3ORCID,Reis Victor Machado45ORCID,Moreira-Gonçalves Daniel67ORCID,Fernandes Ricardo J.12ORCID

Affiliation:

1. Center of Research, Education, Innovation and Intervention in Sport, Faculty of Sport, University of Porto, Porto, Portugal

2. Porto Biomechanics Laboratory, Faculty of Sport, University of Porto, Porto, Portugal

3. Research Institute for Sport and Exercise, University of Canberra, Canberra, ACT, Australia

4. Department of Sport Sciences, Exercise and Health, University of Trás-os-Montes e Alto Douro, Vila Real, Portugal

5. Research Center in Sports Sciences, Health Sciences and Human Development, Vila Real, Portugal

6. Research Center in Physical Activity, Health and Leisure, Faculty of Sport, University of Porto, Porto, Portugal

7. Laboratory for Integrative and Translational Research in Population Health, Porto, Portugal

Abstract

Purpose: Fran is one of the most popular CrossFit benchmark workouts used to control CrossFitters’ improvements. Detailed physiological characterization of Fran is needed for a more specific evaluation of CrossFitters’ training performance improvements. The aim of the study was to analyze the oxygen uptake () kinetics and characterize the energy system contributions and the degree of postexercise fatigue of the unbroken Fran. Methods: Twenty trained CrossFitters performed Fran at maximal exertion. and heart-rate kinetics were assessed at baseline and during and post-Fran. Blood lactate and glucose concentrations and muscular fatigue were measured at baseline and in the recovery period. Results: A marked increase in kinetics was observed at the beginning of Fran, remaining elevated until the end (: 49.2 [3.7] mL·kg−1·min−1, amplitude: 35.8 [5.2] mL·kg−1·min−1, time delay: 4.7 [2.5] s and time constant: 23.7 [11.1] s; mean [SD]). Aerobic, anaerobic lactic, and alactic pathways accounted for 62% (4%), 26% (4%), and 12% (2%) of energy contribution. Reduction in muscle function in jumping ability (jump height: 8% [6%], peak force: 6% [4%], and maximum velocity: 4% [2%]) and plank prone test (46% [20%]) was observed in the recovery period. Conclusions: The Fran unbroken workout is a high-intensity effort associated with an elevated metabolic response. This pattern of energy response highlights the primary contribution of aerobic energy metabolism, even during short and very intense CrossFit workouts, and that recovery can take >24 hours due to cumulative fatigue.

Publisher

Human Kinetics

Subject

Orthopedics and Sports Medicine,Physical Therapy, Sports Therapy and Rehabilitation

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