Int J Sports Med 2020; 41(11): 720-728
DOI: 10.1055/a-1157-9078
Review

The Effects of Agility Ladders on Performance: A Systematic Review

José Afonso
1   Centre for Research, Education, Innovation and Intervention in Sport, University of Porto, Porto, Portugal
,
Israel Teoldo da Costa
2   NUPEF, NUPEF – Núcleo de Pesquisa e Estudos em Futebol, Universidade Federal de Viçosa, Viçosa, Minas Gerais, Brazil
,
Miguel Camões
3   Escola Superior de Desporto e Lazer, Instituto Politécnico de Viana do Castelo, Viana do Castelo, Portugal
4   The Research Centre in Sports Sciences, Health Sciences and Human Development (CIDESD), Vila Real 5001-801, Portugal
,
Ana Silva
3   Escola Superior de Desporto e Lazer, Instituto Politécnico de Viana do Castelo, Viana do Castelo, Portugal
4   The Research Centre in Sports Sciences, Health Sciences and Human Development (CIDESD), Vila Real 5001-801, Portugal
5   N2i, Polytechnic Institute of Maia, 4475-690 Maia, Portugal
,
Ricardo Franco Lima
3   Escola Superior de Desporto e Lazer, Instituto Politécnico de Viana do Castelo, Viana do Castelo, Portugal
4   The Research Centre in Sports Sciences, Health Sciences and Human Development (CIDESD), Vila Real 5001-801, Portugal
,
André Milheiro
6   CIFI2D, Centre for Research, Education, Innovation and Intervention in Sport (CIFI2D), Faculty of Sport of the University of Porto (FADEUP), Porto, Portugal
,
Alexandre Martins
6   CIFI2D, Centre for Research, Education, Innovation and Intervention in Sport (CIFI2D), Faculty of Sport of the University of Porto (FADEUP), Porto, Portugal
,
Lorenzo Laporta
7   Universidade Regional Integrada do Alto Uruguai e das missões (Santiago/Brasil)
,
Fábio Yuzo Nakamura
8   Departamento de Educação Física, Universidade Estadual de Londrina, Londrina, Brazil
,
Filipe Manuel Clemente
3   Escola Superior de Desporto e Lazer, Instituto Politécnico de Viana do Castelo, Viana do Castelo, Portugal
› Author Affiliations
Funding: There was no funding for conducting this research.

Abstract

The goal of this systematic review was to evaluate the effects of exercise programs using agility ladders and to assess the quality of available evidence. Search was conducted in October of 2019 using the following databases: Cochrane Library, PEDro, PubMed, Scopus and Web of Science. Study eligibility criteria included randomized trials or randomized controlled trials using agility ladders drills. Participants were healthy humans of any health status. The study appraisal and synthesis methods followed the revised Cochrane risk-of-bias tool for randomized trials (RoB 2) and a qualitative synthesis of the main results of each study were applied. Only five studies met our criteria, lasting between 4 and 8 weeks. Only two studies evaluated the effects of ladder drills on more than one dimension. Lack of description of the specific exercises that were used limits reproducibility of current studies. With one exception, the articles had low risk of bias for most domains. Despite the widespread popularity of agility ladder drills, research is scarce and problematic, with poorly described protocols and mostly unidimensional performance measures. Claims that agility ladders improve agility and other physical skills is premature, given the nature and quality of existing research.



Publication History

Received: 15 January 2020

Accepted: 29 March 2020

Article published online:
12 May 2020

© 2020. Thieme. All rights reserved.

© Georg Thieme Verlag KG
Stuttgart · New York

 
  • References

  • 1 Young WB, Farrow D. A review of agility: Practical applications for strength and conditioning. Strength Cond J 2006; 28: 24-29
  • 2 Bekris E, Gissis I, Kounalakis S. The dribbling agility test as a potential tool for evaluating the dribbling skill in young soccer players. Res Sport Med 2018; 26: 425-435
  • 3 Young WB, Dawson B, Henry GJ. Agility and change-of-direction speed are independent skills: implications for training for agility in invasion sports. Int J Sports Sci Coach 2015; 10: 159-169
  • 4 Sheppard JM, Young WB. Agility literature review: Classifications, training and testing. J Sports Sci 2006; 24: 919-932
  • 5 Ferreira A, Enes C, Leao C. et al. Relationship between power condition, agility, and speed performance among young roller hockey elite players. Hum Mov 2019; 20: 24-30
  • 6 Hammami M, Negra Y, Billaut F. et al. Effects of lower-limb strength training on agility, repeated sprinting with changes of direction, leg peak power, and neuromuscular adaptations of soccer players. J Strength Cond Res 2018; 32: 37-47
  • 7 Darby SA, Frysztak RJ. Neuroanatomy of the spinal cord. In: Clinical Anatomy of the Spine, Spinal Cord and ANS. Maryland Heights: Mosby-Elsevier; 2014: 341-412
  • 8 Bloomfield J, Polman R, O’Donoghue PLM. Effective speed and agility conditioning methodology for random intermittent dynamic type sports. J Strength Cond Res 2007; 21: 1093-1100
  • 9 Brown L, Ferrigno V. Training for Speed, Agility, and Auickness. 3rd Ed. Champaign IL, USA: Human Kinetics; 2014
  • 10 Meng HC, Lee JLF. Effects of agility ladder drills on dynamic balance of children. J Sport Sci Phys Educ Malaysia 2014; 2: 68-75
  • 11 Ricotti L. Static and dynamic balance in young athletes. J Hum Sport Exerc 2011; 6: 616-628
  • 12 Dawes J. Developing Agility and Quickness. Champaign IL, USA: Human Kinetics; 2019
  • 13 Kusnanik NW, Rattray B. Effect of ladder speed run and repeated sprint ability in improving agility and speed of junior soccer players. Acta Kinesiol 2017; 11: 19-22
  • 14 Campbell L. Propositionalism about intention: Shifting the burden of proof. Can J Philos 2019; 49: 230-252
  • 15 Bermejo-Luque L, Corredor C. Introduction for a special volume of argumentation on presumptions, presumptive inferences and burdens of proof. Argumentation 2017; 31: 463-467
  • 16 Williamson T. Philosophial expertise and the burden of proof. Metaphilosophy 2011; 42: 215-229
  • 17 Michailidis Y, Fatouros IG, Primpa E. et al. Plyometricsʼ trainability in preadolescent soccer athletes. J Strength Cond Res 2013; 27: 38-49
  • 18 Ng RSK. Effects of 6-week agility ladder drills during recess intervention on dynamic balance performance. Journal of Physical Education and Sport 2017; 17: 306-311
  • 19 Sriram P, Sebastian P. Effect of ladder training, plyometric training and combined training on agility performnace of inter collegiate male athletes. Int J Basic Appl Res 2019; 9: 547-555
  • 20 Smits-Engelsman B, Aertssen W, Bonney E. Reliability and validity of the ladder agility test among children. Pediatr Exerc Sci 2019; 31: 370-378
  • 21 de Almeida R. Improved performance basketball dribble foundation in adolescents between 12 and 13 years old at the social project pass magic. Revista Brasileira de Futsal e Futebol 2015; 7: 517-530
  • 22 Bermejo FJ, Olcina G, Martínez I. et al. Effects of a HIIT protocol including functional exercises on performance and body composition. Arch Med Deporte 2018; 35: 386-391
  • 23 Moher D. Preferred reporting items for systematic reviews and meta-analyses: The PRISMA statement. Ann Intern Med 2009; 151: 264-269
  • 24 Harriss DJ, MacSween A, Atkinson G. Ethical standards in sport and exercise science research: 2020 update. Int J Sports Med 2019; 40: 813-817
  • 25 Lou H, Shu Z, Cui T. et al. The application research on agility ladder training about 3D digitizing based on outdoor motion capture technology. In: 2013 International Conference on Sport Science and Computer Science. Hong Kong, China: WITPress; 2014: 377-386
  • 26 Jie K, You-Can C, Di W. Experimental research of influences of agility ladder practice and the indexes of physical quality of children 4–6 years old. In: International Symposium on Common Development of Sports and Modern Society Local Shanghai, Peoples Republica of China: US Sci & Res Cent Publishing; 2015
  • 27 Boonim K, Sanguansat P. Athletes performance evaluation by automated ladder for speed and agility. In: ECTI-CON 2018 - 15th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology Thailand: Institute of Electrical and Electronics Engineers Inc; 2019
  • 28 Hewett TE, Ford KR, Myer GD. et al. Gender differences in hip adduction motion and torque during a single-leg agility maneuver. J Orthop Res 2006; 24: 416-421
  • 29 Lorenz D. The slideboard and agility ladder as a tool for upper extremity rehabilitation and conditioning. Strength Cond J 2013; 35: 66-68
  • 30 Pratama NE, Mintarto E, Kusnanik NW. The influence of ladder drills and jump rope exercise towards speed, agility, and power of limb muscle. IOSR Journal of Sports and Physical Education 2018; 5: 22-29
  • 31 Rauschenbach J, Balakshin A. Agility ladders. Strategies 1997; 10: 5-7
  • 32 Smits-Engelsman BCM, Bonney E. Children’s Repetitive and Intermittent Sprinting Performance (CRISP) Test: A new field-based test for assessing anaerobic power and repeated sprint performance in children with developmental coordination disorder. Res Dev Disabil 2019; 93: 103461
  • 33 Young WB, Pryor L. Relationship between pre-season anthropometric and fitness measures and indicators of playing performance in elite junior Australian Rules football. J Sci Med Sport 2007; 10: 110-118
  • 34 Padrón-Cabo A, Rey E, Kalén A et al. Effects of training with an agility ladder on sprint, agility, and dribbling performance in youth soccer players. J Hum Kinet; 2019 DOI: 10.2478/hukin-2019-0146
  • 35 Roopchand-Martin S, Chong RA, Facey A. et al. A pilot randomised clinical trial comparing the effect of video game dance training with ladder drills on agility of elite volleyball players. NZ J Physiother 2018; 46: 6-11
  • 36 Sethu S. Comparison of plyometric training and ladder training on sprinting speed, vertical explosive power and agility. Int J Recent Res Appl Stud 2014; 1: 59-63
  • 37 Ng RSK, Cheung CW, Raymond KWS. Effects of 6-week agility ladder drills during recess intervention on dynamic balance performance. Journal of Physical Education and Sport 2017; 17: 306-311
  • 38 Asadi A, Arazi H, Ramirez-Campillo R. et al. Influence of maturation stage on agility performance gains after plyometric training. J Strength Cond Res 2017; 31: 2609-2617
  • 39 Slimani M, Chamari K, Miarka B. et al. Effects of plyometric training on physical fitness in team sport athletes: A systematic review. J Hum Kinet 2016; 53: 231-247
  • 40 Schmidt R, Wrisberg C. Motor Learning and Performance. A Situation-Based Learning Approach. 4th Ed. Champaign IL, USA: Human Kinetics; 2008
  • 41 Silva AF, Clemente FM, Lima R. et al. The effect of plyometric training in volleyball players: A systematic review. Int J Environ Res Public Health 2019; 16: E2960
  • 42 Pigliucci M, Boudry M. Prove it! the burden of proof game in science vs. pseudoscience disputes. Philosophia 2013; 42: 487-502