Reproducibility and Repeatability of Five Different Technologies for Bar Velocity Measurement in Resistance Training
Published 2019 View Full Article
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Title
Reproducibility and Repeatability of Five Different Technologies for Bar Velocity Measurement in Resistance Training
Authors
Keywords
Standard error of measurement, Velocity-based resistance training, Exercise testing, Monitoring, Strength performance, Validity
Journal
ANNALS OF BIOMEDICAL ENGINEERING
Volume -, Issue -, Pages -
Publisher
Springer Nature
Online
2019-04-13
DOI
10.1007/s10439-019-02265-6
References
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Related references
Note: Only part of the references are listed.- Is the high-speed camera-based method a plausible option for bar velocity assessment during resistance training?
- (2019) Alejandro Sánchez-Pay et al. MEASUREMENT
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- Validity of Various Methods for Determining Velocity, Force, and Power in the Back Squat
- (2017) Harry G. Banyard et al. International Journal of Sports Physiology and Performance
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- (2017) Carlos Balsalobre-Fernández et al. JOURNAL OF SPORTS SCIENCES
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- (2017) Ricardo Morán-Navarro et al. JOURNAL OF STRENGTH AND CONDITIONING RESEARCH
- Analysis of Wearable and Smartphone-Based Technologies for the Measurement of Barbell Velocity in Different Resistance Training Exercises
- (2017) Carlos Balsalobre-Fernández et al. Frontiers in Physiology
- Validity and Reliability of the PUSH Wearable Device to Measure Movement Velocity During the Back Squat Exercise
- (2016) Carlos Balsalobre-Fernández et al. JOURNAL OF STRENGTH AND CONDITIONING RESEARCH
- Effects of velocity loss during resistance training on athletic performance, strength gains and muscle adaptations
- (2016) F. Pareja-Blanco et al. SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS
- Maximal intended velocity training induces greater gains in bench press performance than deliberately slower half-velocity training
- (2014) Juan José González-Badillo et al. European Journal of Sport Science
- Comparison of Markerless and Marker-Based Motion Capture Technologies through Simultaneous Data Collection during Gait: Proof of Concept
- (2014) Elena Ceseracciu et al. PLoS One
- Pseudoephedrine and circadian rhythm interaction on neuromuscular performance
- (2014) J. G. Pallarés et al. SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS
- Interpreting reproducibility results for ultrasound measurements
- (2014) W. P. Martins et al. ULTRASOUND IN OBSTETRICS & GYNECOLOGY
- Velocity Loss as an Indicator of Neuromuscular Fatigue during Resistance Training
- (2011) LUIS SÁNCHEZ-MEDINA et al. MEDICINE AND SCIENCE IN SPORTS AND EXERCISE
- Importance of the Propulsive Phase in Strength Assessment
- (2010) L. Sanchez-Medina et al. INTERNATIONAL JOURNAL OF SPORTS MEDICINE
- Movement Velocity as a Measure of Loading Intensity in Resistance Training
- (2010) J. J. González-Badillo et al. INTERNATIONAL JOURNAL OF SPORTS MEDICINE
- Method agreement analysis: A review of correct methodology
- (2010) P.F. Watson et al. THERIOGENOLOGY
- Reliability, repeatability and reproducibility: analysis of measurement errors in continuous variables
- (2008) J. W. Bartlett et al. ULTRASOUND IN OBSTETRICS & GYNECOLOGY
- Recommended methods for determining responsiveness and minimally important differences for patient-reported outcomes
- (2007) Dennis Revicki et al. JOURNAL OF CLINICAL EPIDEMIOLOGY
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