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Editorial

Open Access Special Issue

Sports biomechanics: monitoring health and performance

  • Pedro Forte1,2,3,†
  • Henrique P. Neiva2,4,†
  • Daniel A. Marinho2,4,†

1Department of Sports Sciences, Douro Higher Institute of Educational Sciences, 4560-708 Penafiel, Portugal

2Research Center in Sports, Health and Human Development, 6201-001 Covilhã, Portugal

3Department of Physical Education and Sports, Instituto Politécnico de Bragança, 5300-253 Bragnaça, Portugal

4Department of Sports Sciences, University of Beira Interior, 6201-001 Covilhã, Portugal

DOI: 10.31083/jomh.2021.105 Vol.17,Issue 4,September 2021 pp.4-6

Submitted: 07 August 2021 Accepted: 23 August 2021

Published: 30 September 2021

(This article belongs to the Special Issue Sports Biomechanics for Health and Performance)

*Corresponding Author(s): Henrique P. Neiva E-mail: hpn@ubi.pt

† These authors contributed equally.

Cite and Share

Pedro Forte,Henrique P. Neiva,Daniel A. Marinho. Sports biomechanics: monitoring health and performance. Journal of Men's Health. 2021. 17(4);4-6.

References

[1] Teixeira JE, Forte P, Ferraz R, Leal M, Ribeiro J, Silva AJ, et al. Monitoring Accumulated Training and Match Load in Football: A Systematic Review. International Journal of Environmental Research and Public Health. 2021; 18: 3906.

[2] Impellizzeri FM, Marcora SM, Coutts AJ. Internal and External Training Load: 15 Years on. International Journal of Sports Physiology and Performance. 2019; 14: 270–273.

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[5] Hamill J, Knutzen KM, Derrick TR. Biomechanics: 40 Years on. Kinesiology Review. 2021; 10: 228–237.

[6] Drew MK, Finch CF. The Relationship between Training Load and Injury, Illness and Soreness: a Systematic and Literature Review. Sports Medicine. 2016; 46: 861–883.

[7] Forte P, Marinho DA, Morais JE, Morouço PG, Barbosa TM. Estimation of mechanical power and energy cost in elite wheelchair racing by analytical procedures and numerical simulations. Computer Methods in Biomechanics and Biomedical Engineering. 2018; 21: 585–592.

[8] Barbosa TM, Morais JE, Forte P, Neiva H, Garrido ND, Marinho DA. A Comparison of Experimental and Analytical Procedures to Measure Passive Drag in Human Swimming. PLoS ONE. 2015; 10: e0130868.

[9] Morais JE, Barbosa TM, Forte P, Bragada JA, Castro FAS, Marinho DA. Stability analysis and prediction of pacing in elite 1500 m freestyle male swimmers. Sports Biomechanics. 2020. (in press)

[10] Forte P, Marinho DA, Silveira R, Barbosa TM, Morais JE. The Aerodynamics and Energy Cost Assessment of an Able-Bodied Cyclist and Amputated Models by Computer Fluid Dynamics. Medicina. 2020; 56: 241.

[11] Teixeira JE, Forte P, Ferraz R, Leal M, Ribeiro J, Silva AJ, et al. Quantifying Sub-Elite Youth Football Weekly Training Load and Recovery Variation. Applied Sciences. 2021; 11: 4871.

[12] Sousa AC, Neiva HP, Izquierdo M, Cadore EL, Alves AR, Marinho DA. Concurrent Training and Detraining: brief Review on the Effect of Exercise Intensities. International Journal of Sports Medicine. 2019; 40: 747–755.

[13] Hawkins D, Metheny J. Overuse injuries in youth sports: biomechani-cal considerations. Medicine and Science in Sports and Exercise. 2001; 33: 1701–1707.

[14] Morais JE, Barbosa TM, Forte P, Pinto JN, Marinho DA. Assessment of the inter-lap stability and relationship between the race time and start, clean swim, turn and finish variables in elite male junior swimmers’ 200 m freestyle. Sports Biomechanics. 2021. (in press)

[15] Bourdon PC, Cardinale M, Murray A, Gastin P, Kellmann M, Varley MC, et al. Monitoring Athlete Training Loads: Consensus Statement. International Journal of Sports Physiology and Performance. 2017; 12: S2–170.

[16] Barbosa TM, Ramos R, Silva AJ, Marinho DA. Assessment of passive drag in swimming by numerical simulation and analytical procedure. Journal of Sports Sciences. 2018; 36: 492–498.

[17] Forte P, Marinho DA, Nikolaidis PT, Knechtle B, Barbosa TM, Morais JE. Analysis of cyclist’s drag on the aero position using numerical simulations and analytical procedures: A case study. International Journal of Environmental Research and Public Health. 2020; 17: 3430.

[18] Alves ME, Marinho DA, Carneiro DN, Alves J, Forte P, Nevill AM, et al. A Visual Scan Analysis Protocol for Postural Assessment at School in Young Students. International Journal of Environmental Research and Public Health. 2020; 17: 2915.

[19] Forte P, Morais J, Barbosa T, Reis A. Análise da Magnitude das Assimetrias Posturais em Crianças e Jovens Futebolistas. Revista Brasileira de Futebol. 2020; 13: 3–16. (In Portuguese)

[20] Barbosa TM, Forte P, Marinho DA, Reis VM. Comparison of the World and European Records in the 100m Dash by a Quasi-Physical Model. Procedia Engineering. 2016; 147: 122–126.

[21] Forte P, Marinho DA, Barbosa TM, Morouço P, Morais JE. Estimation of an Elite Road Cyclist Performance in Different Positions Based on Numerical Simulations and Analytical Procedures. Frontiers in Bioengineering and Biotechnology. 2020; 8: 1–9.

[22] Defraeye T, Blocken B, Koninckx E, Hespel P, Carmeliet J. Aerody-namic study of different cyclist positions: CFD analysis and full-scale wind-tunnel tests. Journal of Biomechanics. 2010; 43: 1262–1268.

[23] Ribeiro B, Pereira A, Alves A, Neves P, Marques M, Marinho D, et al. Specific warm-up enhances movement velocity during bench press and squat resistance training. Journal of Men’s Health. 2021. (in press)

[24] Forte P, Morais JE, Barbosa TM, Marinho DA. Assessment of Able-Bodied and Amputee Cyclists’ Aerodynamics by Computational Fluid Dynamics. Frontiers in Bioengineering and Biotechnology. 2021; 9: 163.

[25] Forte P, Marinho DA, Morais JE, Morouço PG, Barbosa TM. The variations on the aerodynamics of a world-ranked wheelchair sprinter in the key-moments of the stroke cycle: a numerical simulation analysis. PLoS ONE. 2018; 13: e0193658.

[26] Monteiro AM, Forte P, Carvalho J, Barbosa TM, Morais JE. Rela-tionship between fear of falling and balance factors in healthy elderly women: a confirmatory analysis. Journal of Women & Aging. 2021; 33: 57–69.

[27] Monteiro A, Bartolomeu R, Forte P, Carvalho J. The effects of three different types of training in functional fitness and body composition in older women. Journal of Sport and Health Research. 2019; 11: 289–304.

[28] Monteiro AM, Forte P, Carvalho MJ. The effect of three different training programs in elderly women’s isokinetic strength. Motricidade. 2020; 16: 84–93.

[29] Monteiro A, Silva P, Forte P, Carvalho J. The effects of daily physical activity on functional fitness, isokinetic strength and body composition in elderly community-dwelling women. Journal of Human Sport and Exercise. 2019; 14: 385–398.

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