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Effects of rowing stroke rates on lower extremity intra-joint coordination variability in experienced young rowers

. 2023 ; 18 (12) : e0286999. [epub] 20231221

Language English Country United States Media electronic-ecollection

Document type Journal Article

The purpose of this study was to examine the effects of rowing stroke rates on lower extremity intra-joint coordination variability in professional rowers. Fifteen experienced young rowers volunteered to participate in this study. Kinematic data were recorded at different rowing speeds with seven Vicon cameras. The continuous relative phase (CRP) and CRP variability (CRPV) were used to calculate joint coordination and coordination variability, respectively, for the hip, knee, and ankle in the sagittal and horizontal planes, and a comparison was made among different rowing stroke rates. A vector analysis repeated measure ANOVA using statistical parametric mapping revealed that there were statistically significant differences in the hip-ankle, hip-knee, and knee-ankle CRPs for rowing at different stroke rates. Moreover, there was higher CRPV in the mid-drive and mid-recovery phases and less variability in the transition from the drive phase to the recovery phase. The results demonstrate the importance of knee joint in rowing tasks in experienced rowers during submaximal rowing stroke rate and the shift of movement to the hip at higher rowing stroke rate. Moreover, there was a smaller variability during drive-to-recovery transition, which may suggests an increased risk for overuse injuries.

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Thornton JS, Vinther A, Wilson F, Lebrun CM, Wilkinson M, Di Ciacca SR, et al.. Rowing Injuries: An Updated Review. Sport Med. 2017;47: 641–661. doi: 10.1007/s40279-016-0613-y PubMed DOI

Smoljanovic T, Bohacek I, Hannafin JA, Terborg O, Hren D, Pecina M, et al.. Acute and chronic injuries among senior international rowers: a cross-sectional study. Int Orthop. 2015;39: 1623–1630. doi: 10.1007/s00264-014-2665-7 PubMed DOI

Rachnavy P. Rowing Biomechanics and Injury Prevention. J Sci Med Sport. 2012;15: S127–S187.

Hosea TM, Hannafin JA. Rowing injuries. Sports Health. 2012;4: 236–245. doi: 10.1177/1941738112442484 PubMed DOI PMC

Kleshnev V. The biomechanics of rowing. The Crowood Press Ltd; 2016.

Nugent FJ, Vinther A, McGregor A, Thornton JS, Wilkie K, Wilson F. The relationship between rowing-related low back pain and rowing biomechanics: a systematic review. Br J Sports Med. 2021; 1–15. doi: 10.1136/bjsports-2020-102533 PubMed DOI

Hickey G.J., Fricker P.A. and WAM. Injuries to elite rowers over a 10-yr period. Med Sci Sports Exerc. 1997;29(12): 1567–1572. doi: 10.1097/00005768-199712000-00004 PubMed DOI

Rumball JS, Lebrun CM, Di Ciacca SR, Orlando K. Rowing injuries. Sports Medicine. 2005. pp. 537–555. doi: 10.2165/00007256-200535060-00005 PubMed DOI

Evans G, Redgrave A. Great Britain Rowing Team Guideline for diagnosis and management of rib stress injury: Part 1. Br J Sports Med. 2016;50: 266–269. doi: 10.1136/bjsports-2015-095126 PubMed DOI

Wilson F, Gissane C, Gormley J, Simms C. A 12 Month Prospective Cohort Study of Injury in International Rowers. Br J Sports Med. 2008;44: 207–214. doi: 10.1136/bjsm.2008.048561 PubMed DOI

Xu D, Jiang X, Cen X, Baker JS, Gu Y. Single-leg landings following a volleyball spike may increase the risk of anterior cruciate ligament injury more than landing on both-legs. Appl Sci. 2020;11: 130.

Xu D, Lu J, Baker JS, Fekete G, Gu Y. Temporal kinematic and kinetics differences throughout different landing ways following volleyball spike shots. Proc Inst Mech Eng Part P J Sport Eng Technol. 2022;236: 200–208.

Redgrave S. Complete book of rowing. Saint Cloud, GB: Partridge Press. 1995.

Nolte V. Rowing faster. Champaign, USA: Human Kinetics Publishers; 2005.

Caldwell JS, McNair PJ, Williams M. The effects of repetitive motion on lumbar flexion and erector spinae muscle activity in rowers. Clin Biomech. 2003;18: 704–711. doi: 10.1016/s0268-0033(03)00117-7 PubMed DOI

McGregor AH, Bull AMJ, Byng-Maddick R. A comparison of rowing technique at different stroke rates: A description of sequencing, force production and kinematics. Int J Sports Med. 2004;25: 465–470. doi: 10.1055/s-2004-820936 PubMed DOI

Abbasi A, Yazdanbakhsh F, Khaleghi Tazji M, Aghaie Ataabadi P, Svoboda Z, Nazarpour K, et al.. A comparison of coordination and its variability in lower extremity segments during treadmill and overground running at different speeds. Gait Posture. 2020;79: 139–144. doi: 10.1016/j.gaitpost.2020.04.022 PubMed DOI

Alijanpour E, Abbasi A, Needham RA, Naemi R. Spine and pelvis coordination variability in rowers with and without chronic low back pain during rowing. J Biomech. 2021;120: 110356. doi: 10.1016/j.jbiomech.2021.110356 PubMed DOI

Mehri R, Abbasi A, Abbasi S, Khaleghi Tazji M, Nazarpour K. Intra-Segment Coordination Variability in Road Cyclists during Pedaling at Different Intensities. Appl Sci. 2020;10: 8964.

Needham RA, Naemi R, Hamill J, Chockalingam N. Analysing patterns of coordination and patterns of control using novel data visualisation techniques in vector coding. Foot. 2020;44: 101678. doi: 10.1016/j.foot.2020.101678 PubMed DOI

Needham RA, Naemi R, Chockalingam N. A new coordination pattern classification to assess gait kinematics when utilising a modified vector coding technique. J Biomech. 2015;48: 3506–3511. doi: 10.1016/j.jbiomech.2015.07.023 PubMed DOI

Mullineaux, David R. JW. Quantifying coordination in kinematic data: a running example. ISBS-Conference Proc Arch. 2002.

Sadeghi H, Shojaedin SS, Abbasi A, Alijanpour E, Vieira MF, Svoboda Z, et al.. Lower-Extremity Intra-Joint Coordination and Its Variability between Fallers and Non-Fallers during Gait. Appl Sci. 2021;11: 2840.

Seay JF, Van Emmerik REA, Hamill J. Low back pain status affects pelvis-trunk coordination and variability during walking and running. Clin Biomech. 2011;26: 572–578. doi: 10.1016/j.clinbiomech.2010.11.012 PubMed DOI

Bailey JP, Freedman J, Dufek JS, Navalta J, Mercer JA. Effects of treadmill running velocity on lower extremity coordination variability in healthy runners. Hum Mov Sci. 2018;61: 144–150. doi: 10.1016/j.humov.2018.07.013 PubMed DOI

Potvin-gilbert M. Motor Variability in Rowing. The University of Western Ontario. 2018.

Zainuddin FL, Zahiran A, Umar MA. Original Article Changes in lower limb kinematics coordination during 2000m ergometer rowing among male junior national rowers. J Phys Educ Sport. 2019;19: 1656–1662. doi: 10.7752/jpes.2019.03240 DOI

Stergiou N. Innovative Analysis of Human Movement. Human Kinetics; 2004.

Seay JF, Van Emmerik REA, Hamill J. Influence of low back pain status on pelvis-trunk coordination during walking and running. Spine (Phila Pa 1976). 2011;36. doi: 10.1097/BRS.0b013e3182015f7c PubMed DOI

Park H-J, Sim T, Suh S-W, Yang JH, Koo H, Mun JH. Analysis of coordination between thoracic and pelvic kinematic movements during gait in adolescents with idiopathic scoliosis. Eur Spine J. 2016;25: 385–393. doi: 10.1007/s00586-015-3931-0 PubMed DOI

Millar S-K, Reid D, McDonnel L. The Differences in Spinal Kinematics and Loading in High Performance Female Rowers During Ergometer and on Water Rowing. ISBS Proc Arch. 2018;36: 486.

Minnock MR. Kinematic Analysis of Trunk Coordination Throughout the Rowing Kinematic Analysis of Trunk Coordination Throughout the Rowing Stroke Sequence Stroke Sequence. University of Tennessee. 2017. Available: https://trace.tennessee.edu/utk_gradthes

Pollock CL, Jones IC, Jenkyn TR, Ivanova TD, Garland SJ. Changes in kinematics and trunk electromyography during a 2000 m race simulation in elite female rowers. Scand J Med Sci Sports. 2012;22: 478–487. doi: 10.1111/j.1600-0838.2010.01249.x PubMed DOI

Trompeter K, Weerts J, Fett D, Firouzabadi A, Heinrich K, Schmidt H, et al.. Spinal and Pelvic Kinematics During Prolonged Rowing on an Ergometer vs. Indoor Tank Rowing. J Strength Cond Res. 2019; 1. doi: 10.1519/jsc.0000000000003187 PubMed DOI

Buckeridge EM, Bull AMJ, McGregor AH. Incremental training intensities increases loads on the lower back of elite female rowers. J Sports Sci. 2016;34: 369–378. doi: 10.1080/02640414.2015.1056821 PubMed DOI

Neumann DA. Kinesiology of the musculoskeletal system; Foundation for rehabilitation. Mosby & Elsevier. 2010.

Robertson D. G. E., Caldwell G. E., Hamill J., Kamen G., & Whittlesey S. Research methods in biomechanics. Human kinetics. Hum Kinet. 2013;2E.

Floria P, Sánchez-Sixto A, Harrison AJ, Ferber R. The effect of running speed on joint coupling coordination and its variability in recreational runners. Hum Mov Sci. 2019;66: 449–458. doi: 10.1016/j.humov.2019.05.020 PubMed DOI

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