Caution using data from triaxial accelerometers housed in player tracking units during running
暂无分享,去创建一个
Robert Robergs | Nicholas O'Dwyer | Suzi Edwards | Seaton Humphreys | Samuel White | N. O'dwyer | R. Robergs | S. Edwards | Seaton Humphreys | Samuel White
[1] Martyn R. Shorten,et al. Spectral analysis of impact shock during running , 1992 .
[2] S. Intille,et al. Estimating activity and sedentary behavior from an accelerometer on the hip or wrist. , 2013, Medicine and science in sports and exercise.
[3] Dhruv R. Seshadri,et al. Wearable sensors for monitoring the internal and external workload of the athlete , 2019, npj Digital Medicine.
[4] Martin Buchheit,et al. Assessing Stride Variables and Vertical Stiffness with GPS-Embedded Accelerometers: Preliminary Insights for the Monitoring of Neuromuscular Fatigue on the Field. , 2015, Journal of sports science & medicine.
[5] M. Lafortune,et al. Differential shock transmission response of the human body to impact severity and lower limb posture. , 1996, Journal of biomechanics.
[6] David A. Winter,et al. Biomechanics and Motor Control of Human Movement , 1990 .
[7] Kevin Netto,et al. Validity of wearable technology to measure peak impact during high-intensity treadmill running , 2013 .
[8] Joseph L. Fleiss,et al. The Design and Analysis of Clinical Experiments: Fleiss/The Design , 1999 .
[9] Yeh-Liang Hsu,et al. A Review of Accelerometry-Based Wearable Motion Detectors for Physical Activity Monitoring , 2010, Sensors.
[10] C. T. Farley,et al. Determinants of the center of mass trajectory in human walking and running. , 1998, The Journal of experimental biology.
[11] W G Hopkins,et al. Measures of Reliability in Sports Medicine and Science , 2000, Sports medicine.
[12] B M Nigg,et al. Impact Forces and Muscle Tuning: A New Paradigm , 2001, Exercise and sport sciences reviews.
[13] A. Thorstensson,et al. Ground reaction forces at different speeds of human walking and running. , 1989, Acta physiologica Scandinavica.
[14] Alice J. Sweeting,et al. Inertial sensors to estimate the energy expenditure of team-sport athletes. , 2016, Journal of science and medicine in sport.
[15] S. Aunoble,et al. Equilibrium of the human body and the gravity line: the basics , 2011, European Spine Journal.
[16] Ewald M. Hennig,et al. Relationships between Ground Reaction Force and Tibial Bone Acceleration Parameters , 1991 .
[17] Hiroki Saito,et al. A Preliminary Test of Measurement of Joint Angles and Stride Length with Wireless Inertial Sensors for Wearable Gait Evaluation System , 2011, Comput. Intell. Neurosci..
[18] Daniel W T Wundersitz,et al. Validity of a Wearable Accelerometer Device to Measure Average Acceleration Values During High-Speed Running , 2016, Journal of strength and conditioning research.
[19] Jos Vanrenterghem,et al. The Relationship Between Whole-Body External Loading and Body-Worn Accelerometry During Team-Sport Movements. , 2017, International journal of sports physiology and performance.
[20] Albert Gollhofer,et al. Validation of Wearable Sensors during Team Sport-Specific Movements in Indoor Environments , 2019, Sensors.
[21] R. Bartlett,et al. Evaluation of a two dimensional analysis method as a screening and evaluation tool for anterior cruciate ligament injury , 2022 .
[22] K. Ball,et al. The reliability of MinimaxX accelerometers for measuring physical activity in Australian football. , 2011, International journal of sports physiology and performance.
[23] Tim J Gabbett,et al. Accelerometer and GPS-Derived Running Loads and Injury Risk in Elite Australian Footballers , 2014, Journal of strength and conditioning research.
[24] N. O'dwyer,et al. Consistency of kinematic and kinetic patterns during a prolonged spell of cricket fast bowling: an exploratory laboratory study , 2018, Journal of sports sciences.
[25] K. Nosaka,et al. Reliability of time-to-exhaustion versus time-trial running tests in runners. , 2007, Medicine and science in sports and exercise.
[26] Brad Aisbett,et al. Validity of an upper-body-mounted accelerometer to measure peak vertical and resultant force during running and change-of-direction tasks , 2013, Sports biomechanics.
[27] D W T Wundersitz,et al. Validation of a Trunk-mounted Accelerometer to Measure Peak Impacts during Team Sport Movements , 2015, International Journal of Sports Medicine.
[28] S. Edwards,et al. The Role of the Trunk Control in Athletic Performance of a Reactive Change-of-Direction Task , 2017, Journal of strength and conditioning research.
[29] Paul B Gastin,et al. Validity of a trunk-mounted accelerometer to assess peak accelerations during walking, jogging and running , 2015, European journal of sport science.
[30] S. Marshall,et al. Progressive statistics for studies in sports medicine and exercise science. , 2009, Medicine and science in sports and exercise.
[31] E. Bradshaw,et al. Reliability of accelerometry to assess impact loads of jumping and landing tasks , 2016, Sports biomechanics.
[32] J. Fleiss. The design and analysis of clinical experiments , 1987 .
[33] Torsten Bumgarner,et al. Biomechanics and Motor Control of Human Movement , 2013 .