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Original Research

Rowing

Accelerometry‐based feedback ‐ can it improve movement consistency and performance in Rowing?

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Pages 179-195 | Published online: 20 Jul 2007

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Read on this site (5)

Anthony J. Gorman, Alexander P. Willmott & David R. Mullineaux. (2022) The effects of concurrent biomechanical biofeedback on novel skill acquisition. Sports Biomechanics 21:3, pages 297-311.
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Anthony J. Gorman, Alexander P. Willmott & David R. Mullineaux. (2021) The effects of concurrent biomechanical biofeedback on rowing performance at different stroke rates. Journal of Sports Sciences 39:23, pages 2716-2726.
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Fabricio Anicio de Magalhaes, Giuseppe Vannozzi, Giorgio Gatta & Silvia Fantozzi. (2015) Wearable inertial sensors in swimming motion analysis: a systematic review. Journal of Sports Sciences 33:7, pages 732-745.
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Martin Eriksson, KjartanA. Halvorsen & Lennart Gullstrand. (2011) Immediate effect of visual and auditory feedback to control the running mechanics of well-trained athletes. Journal of Sports Sciences 29:3, pages 253-262.
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Articles from other publishers (26)

Matt Jensen, Trent Stellingwerff, Courtney Pollock, James Wakeling & Marc Klimstra. (2023) Can Principal Component Analysis Be Used to Explore the Relationship of Rowing Kinematics and Force Production in Elite Rowers during a Step Test? A Pilot Study. Machine Learning and Knowledge Extraction 5:1, pages 237-251.
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Shirin Tajali, Kai Lon Fok, Pirashanth Theventhiran, Gongkai Ye, Hikaru Yokoyama, Kento Nakagawa & Kei Masani. (2022) Development of a Coaching System for Functional Electrical Stimulation Rowing: A Feasibility Study in Able-Bodied Individuals. Sensors 22:5, pages 1813.
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Junggyu Yoon. (2020) The Effect of Frequency of Summary Feedback on the Proprioception in Knee Extension of Healthy Subjects. Archives of Orthopedic and Sports Physical Therapy 16:2, pages 17-24.
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Marián VanderkaAnton BezákKatarína LongováMatúš Krčmár & Simon Walker. (2020) Use of Visual Feedback During Jump-Squat Training Aids Improvement in Sport-Specific Tests in Athletes. Journal of Strength and Conditioning Research 34:8, pages 2250-2257.
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Fábio Barreto Maia da Silva, João Paulo Reis Gonçalves Moreira de Brito & Antonio Carlos Gomes. (2020) OLYMPIC ROWING: MODEL OF COMPETITIVE ACTIVITY OF INTERNATIONAL LEVEL ELITE FEMALE ATHLETES. Revista Brasileira de Medicina do Esporte 26:2, pages 162-166.
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Bryn Cloud, Britt Tarien, Ada Liu, Thomas Shedd, Xinfan Lin, Mont Hubbard, R. Paul Crawford & Jason K. Moore. (2019) Adaptive smartphone-based sensor fusion for estimating competitive rowing kinematic metrics. PLOS ONE 14:12, pages e0225690.
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Chander Kant Bhardwaj & Ram Bhushan Agnihotri. (2019) Wearable Advancements and its Implementation in Sports. Wearable Advancements and its Implementation in Sports.
Xiang Zhang, Gongbing Shan, Ye Wang, Bingjun Wan & Hua Li. (2019) Wearables, Biomechanical Feedback, and Human Motor-Skills’ Learning & Optimization. Applied Sciences 9:2, pages 226.
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Rafael de Pinho André, Alberto Raposo & Hugo Fuks. 2019. Digital Human Modeling and Applications in Health, Safety, Ergonomics and Risk Management. Human Body and Motion. Digital Human Modeling and Applications in Health, Safety, Ergonomics and Risk Management. Human Body and Motion 153 169 .
Basman ABDUL JABBAR. (2018) An analytical study of some biomechanical variables and the achievement level of 2000 m rowing. Turkish Journal of Kinesiology 4:4, pages 125-131.
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John Warmenhoven, Stephen Cobley, Conny Draper & Richard Smith. (2018) Over 50 Years of Researching Force Profiles in Rowing: What Do We Know?. Sports Medicine 48:12, pages 2703-2714.
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Claire JB Kenneally-Dabrowski, Benjamin G Serpell & Wayne Spratford. (2017) Are accelerometers a valid tool for measuring overground sprinting symmetry?. International Journal of Sports Science & Coaching 13:2, pages 270-277.
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Valentina Camomilla, Elena Bergamini, Silvia Fantozzi & Giuseppe Vannozzi. (2018) Trends Supporting the In-Field Use of Wearable Inertial Sensors for Sport Performance Evaluation: A Systematic Review. Sensors 18:3, pages 873.
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Patria A. Hume. 2018. Handbook of Human Motion. Handbook of Human Motion 1719 1739 .
Rui Li, Daniel T. H. Lai & Wee Sit Lee. 2017. Advanced Mechatronics and MEMS Devices II. Advanced Mechatronics and MEMS Devices II 659 686 .
Patria A. Hume. 2017. Handbook of Human Motion. Handbook of Human Motion 1 21 .
Daniel Schlieβmann, Christian Schuld, Matthias Schneiders, Steffen Derlien, Maria Glöckner, Till Gladow, Norbert Weidner & Rüdiger Rupp. (2014) Feasibility of visual instrumented movement feedback therapy in individuals with motor incomplete spinal cord injury walking on a treadmill. Frontiers in Human Neuroscience 8.
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Richard Byrne & Florian ‘Floyd’ Mueller. 2013. Advanced Information Systems Engineering. Advanced Information Systems Engineering 92 99 .
Elissa Phillips, Damian Farrow, Kevin Ball & Richard Helmer. (2013) Harnessing and Understanding Feedback Technology in Applied Settings. Sports Medicine 43:10, pages 919-925.
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Franz Gravenhorst, Timothy Turner, Conny Draper, Richard M. Smith & Gerhard Troester. (2013) Validation of a Rowing Oar Angle Measurement System Based on an Inertial Measurement Unit. Validation of a Rowing Oar Angle Measurement System Based on an Inertial Measurement Unit.
Roland Sigrist, Georg Rauter, Robert Riener & Peter Wolf. (2012) Augmented visual, auditory, haptic, and multimodal feedback in motor learning: A review. Psychonomic Bulletin & Review 20:1, pages 21-53.
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Marc Bächlin & Gerhard Tröster. (2012) Swimming performance and technique evaluation with wearable acceleration sensors. Pervasive and Mobile Computing 8:1, pages 68-81.
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Bernd Tessendorf, Franz Gravenhorst, Bert Arnrich & Gerhard Troster. (2011) An IMU-based sensor network to continuously monitor rowing technique on the water. An IMU-based sensor network to continuously monitor rowing technique on the water.
Nina Schaffert, Klaus Mattes & Alfred O. Effenberg. 2010. Auditory Display. Auditory Display 143 165 .
Marc Bachlin & Gerhard Troster. (2009) Pervasive computing in swimming: A model describing acceleration data of body worn sensors in crawl swimming. Pervasive computing in swimming: A model describing acceleration data of body worn sensors in crawl swimming.
Marc Bachlin, Kilian Forster, Johannes Schumm, Dominik Breu, Jurg Germann & Gerhard Troster. (2008) An automatic parameter extraction method for the 7?50m Stroke Efficiency Test. An automatic parameter extraction method for the 7?50m Stroke Efficiency Test.

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