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On-water Rowing Biomechanical Assessment: A Systematic Scoping Review.

Natalie Legge1,2, Conny Draper3, Katie Slattery4,5

  • 1School of Sport, Exercise and Rehabilitation, Faculty of Health, University of Technology Sydney (UTS), Sydney, NSW, Australia. natalie.legge@acu.edu.au.

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Understanding rowing biomechanics is key for performance. This review identifies key variables like gate force and boat velocity, guiding future research and coaching for skilled rowing.

Keywords:
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Area of Science:

  • Sports Science
  • Biomechanics
  • Rowing Performance Analysis

Background:

  • Biomechanical parameters differentiate skilled from less skilled rowers.
  • Objective biomechanical data can inform rowing technique coaching.
  • Understanding technical characteristics linked to performance indicators is critical.

Purpose of the Study:

  • To systematically review and describe the focus of on-water rowing biomechanics research.
  • To identify research density and trends in the field.
  • To provide guidance for future research and practical applications in on-water rowing.

Main Methods:

  • Systematic scoping review of peer-reviewed publications.
  • Searched four major databases: SPORTDiscus, PubMed, Sage, and Web of Science.
  • Included 27 studies meeting specific on-water rowing biomechanics assessment criteria from 1659 records.

Main Results:

  • Variables collated into time, space, and force measurements.
  • Key categorical variables identified: time, distance, velocity, acceleration, force, power, and crew synchrony.
  • Most reported variables included gate force, horizontal oar angle, and boat velocity.

Conclusions:

  • Gate force, horizontal oar angle, and boat velocity are prominent metrics in rowing biomechanics research.
  • A standardized framework for on-water biomechanical assessment and environmental data collection is needed.
  • This review guides practitioners and researchers toward future directions in on-water rowing biomechanics.