Classification Accuracy of the Wrist-Worn GENEA Accelerometer During Structured Activity Bouts: A Cross-Validation Study
暂无分享,去创建一个
[1] David R Bassett,et al. Calibration and validation of wearable monitors. , 2012, Medicine and science in sports and exercise.
[2] R. Eston,et al. Activity classification using the GENEA: optimum sampling frequency and number of axes. , 2012, Medicine and science in sports and exercise.
[3] Merryn J Mathie,et al. Accelerometry: providing an integrated, practical method for long-term, ambulatory monitoring of human movement , 2004, Physiological measurement.
[4] Kuan Zhang,et al. Measurement of human daily physical activity. , 2003, Obesity research.
[5] L. Mâsse,et al. Physical activity in the United States measured by accelerometer. , 2008, Medicine and science in sports and exercise.
[6] J. D. Janssen,et al. A triaxial accelerometer and portable data processing unit for the assessment of daily physical activity , 1997, IEEE Transactions on Biomedical Engineering.
[7] R E LaPorte,et al. Assessment of physical activity in epidemiologic research: problems and prospects. , 1985, Public health reports.
[8] J F Nichols,et al. Assessment of Physical Activity with the Computer Science and Applications, Inc., Accelerometer: Laboratory versus Field Validation , 2000, Research quarterly for exercise and sport.
[9] David R Bassett,et al. Validity of 2 devices for measuring steps taken by older adults in assisted-living facilities. , 2008, Journal of physical activity & health.
[10] M. Sun,et al. Improving energy expenditure estimation by using a triaxial accelerometer. , 1997, Journal of applied physiology.
[11] C. Tudor-Locke,et al. Challenges and Opportunities for Measuring Physical Activity in Sedentary Adults , 2001, Sports medicine.
[12] B E Ainsworth,et al. Validity of four motion sensors in measuring moderate intensity physical activity. , 2000, Medicine and science in sports and exercise.
[13] K. Patrick,et al. Physical Activity and Public Health: A Recommendation From the Centers for Disease Control and Prevention and the American College of Sports Medicine , 1995 .
[14] P S Freedson,et al. Objective Monitoring of Physical Activity Using Motion Sensors and Heart Rate , 2000, Research quarterly for exercise and sport.
[15] Sari A Acra,et al. Predicting energy expenditure of physical activity using hip- and wrist-worn accelerometers. , 2003, Diabetes technology & therapeutics.
[16] Gregory J Welk,et al. Protocols for evaluating equivalency of accelerometry-based activity monitors. , 2012, Medicine and science in sports and exercise.
[17] P S Freedson,et al. Calibration of the Computer Science and Applications, Inc. accelerometer. , 1998, Medicine and science in sports and exercise.
[18] Michael J Stec,et al. Estimation of Resistance Exercise Energy Expenditure Using Triaxial Accelerometry , 2012, Journal of strength and conditioning research.
[19] Patty Freedson,et al. Assessment of physical activity using wearable monitors: recommendations for monitor calibration and use in the field. , 2012, Medicine and science in sports and exercise.
[20] Gregory J Welk,et al. Field Validation of the MTI Actigraph and BodyMedia Armband Monitor Using the IDEEA Monitor , 2007, Obesity.
[21] Guy Plasqui,et al. Measuring free-living energy expenditure and physical activity with triaxial accelerometry. , 2005, Obesity research.
[22] U. Ekelund,et al. Integration of physiological and accelerometer data to improve physical activity assessment. , 2005, Medicine and science in sports and exercise.
[23] Gregory J Welk,et al. Principles of design and analyses for the calibration of accelerometry-based activity monitors. , 2005, Medicine and science in sports and exercise.
[24] Megan P Rothney,et al. Modeling physical activity outcomes from wearable monitors. , 2012, Medicine and science in sports and exercise.
[25] R. Paffenbarger,et al. Physical activity and stroke incidence: the Harvard Alumni Health Study. , 1998, Stroke.
[26] Tina L Hurst,et al. Physical activity classification using the GENEA wrist-worn accelerometer. , 2012, Medicine and science in sports and exercise.
[27] Patty Freedson,et al. Calibration of accelerometer output for children. , 2005, Medicine and science in sports and exercise.
[28] John Staudenmayer,et al. An artificial neural network to estimate physical activity energy expenditure and identify physical activity type from an accelerometer. , 2009, Journal of applied physiology.
[29] J M Jakicic,et al. Prescribing exercise in multiple short bouts versus one continuous bout: effects on adherence, cardiorespiratory fitness, and weight loss in overweight women. , 1995, International journal of obesity and related metabolic disorders : journal of the International Association for the Study of Obesity.
[30] B. Ainsworth,et al. Estimation of energy expenditure using CSA accelerometers at hip and wrist sites. , 2000, Medicine and science in sports and exercise.
[31] Michael Catt,et al. Validation of the GENEA Accelerometer. , 2011, Medicine and science in sports and exercise.
[32] Kenton R Kaufman,et al. Precision and accuracy of an ankle-worn accelerometer-based pedometer in step counting and energy expenditure. , 2005, Preventive medicine.
[33] John Staudenmayer,et al. Statistical considerations in the analysis of accelerometry-based activity monitor data. , 2012, Medicine and science in sports and exercise.
[34] Scott E Crouter,et al. Refined two-regression model for the ActiGraph accelerometer. , 2010, Medicine and science in sports and exercise.
[35] Stewart G Trost,et al. Conducting accelerometer-based activity assessments in field-based research. , 2005, Medicine and science in sports and exercise.
[36] N. Perkins,et al. The inconsistency of "optimal" cutpoints obtained using two criteria based on the receiver operating characteristic curve. , 2006, American journal of epidemiology.
[37] Gregory J. Welk,et al. Physical Activity Assessments for Health-Related Research , 2002 .
[38] Jonathan Lester,et al. New horizons in sensor development. , 2012, Medicine and science in sports and exercise.
[39] P. Freedson,et al. Validity of accelerometry for the assessment of moderate intensity physical activity in the field. , 2000, Medicine and science in sports and exercise.
[40] David R Bassett,et al. 2011 Compendium of Physical Activities: a second update of codes and MET values. , 2011, Medicine and science in sports and exercise.
[41] J. Sallis. Measuring Physical Activity and Energy Expenditure , 1996 .
[42] D. Bassett. Validity and reliability issues in objective monitoring of physical activity. , 2000, Research quarterly for exercise and sport.
[43] Roy J. Shephard,et al. 2011 Compendium of Physical Activities: A Second Update of Codes and MET Values , 2012 .
[44] R. Paffenbarger,et al. The "weekend warrior" and risk of mortality. , 2004, American journal of epidemiology.
[45] C. Caspersen,et al. Physical activity, exercise, and physical fitness: definitions and distinctions for health-related research. , 1985, Public health reports.
[46] Tom Baranowski,et al. Decision boundaries and receiver operating characteristic curves: New methods for determining accelerometer cutpoints , 2007, Journal of sports sciences.
[47] M. Granat,et al. The validation of a novel activity monitor in the measurement of posture and motion during everyday activities , 2006, British Journal of Sports Medicine.
[48] D. Thompson,et al. Evaluation of activity monitors in controlled and free-living environments. , 2012, Medicine and science in sports and exercise.
[49] K. Westerterp,et al. Physical Activity Assessment With Accelerometers: An Evaluation Against Doubly Labeled Water , 2007, Obesity.
[50] Scott E Crouter,et al. A novel method for using accelerometer data to predict energy expenditure. , 2006, Journal of applied physiology.
[51] D. Bassett,et al. The technology of accelerometry-based activity monitors: current and future. , 2005, Medicine and science in sports and exercise.
[52] P. Freedson,et al. Validity of the Computer Science and Applications, Inc. (CSA) activity monitor. , 1995, Medicine and science in sports and exercise.
[53] P. L. Walter. The history of the accelerometer , 1997 .
[54] J. Brach,et al. Using activity monitors to measure physical activity in free-living conditions. , 2006, Physical therapy.
[55] Kong Y Chen,et al. Redefining the roles of sensors in objective physical activity monitoring. , 2012, Medicine and science in sports and exercise.
[56] D R Bassett,et al. Simultaneous heart rate-motion sensor technique to estimate energy expenditure. , 2001, Medicine and science in sports and exercise.
[57] R S Paffenbarger,et al. Physical Activity and Coronary Heart Disease in Men: The Harvard Alumni Health Study , 2000, Circulation.
[58] Marie Löf,et al. Estimation of Daily Energy Expenditure in Pregnant and Non-Pregnant Women Using a Wrist-Worn Tri-Axial Accelerometer , 2011, PloS one.
[59] U. Ekelund,et al. Assessing physical activity using wearable monitors: measures of physical activity. , 2012, Medicine and science in sports and exercise.
[60] P. Williams,et al. Physical activity and public health. , 1995, JAMA.
[61] Wim H. M. Saris,et al. Measuring Physical Activity and Energy Expenditure , 1996 .
[62] C. Matthews,et al. Best practices for using physical activity monitors in population-based research. , 2012, Medicine and science in sports and exercise.
[63] Scott J Strath,et al. Accelerometer use with children, older adults, and adults with functional limitations. , 2012, Medicine and science in sports and exercise.
[64] J. Webster,et al. Estimation of energy expenditure by a portable accelerometer. , 1983, Medicine and science in sports and exercise.
[65] D R Bassett,et al. Comparison of MTI Accelerometer Cut-Points for Predicting Time Spent in Physical Activity , 2003, International journal of sports medicine.
[66] L. Brouha. Physiology in industry , 1960 .
[67] J. D. Janssen,et al. Assessment of energy expenditure for physical activity using a triaxial accelerometer. , 1994, Medicine and science in sports and exercise.