Assessment of Physical Activity and Energy Expenditure: An Overview of Objective Measures
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Caspersen, 1985, Physical activity, exercise, and physical fitness: definitions and distinctions for health-related research, Public Health Rep, 100, 126
Ainsworth, 2009, How do I measure physical activity in my patients? Questionnaires and objective methods, Br J Sports Med, 43, 6, 10.1136/bjsm.2008.052449
Dencker, 2011, Accelerometer-measured daily physical activity related to aerobic fitness in children and adolescents, J Sports Sci, 29, 887, 10.1080/02640414.2011.578148
Tudor-Locke, 2004, How many steps/day are enough? Preliminary pedometer indices for public health, Sports Med, 34, 1, 10.2165/00007256-200434010-00001
Corder, 2005, Comparison of PAEE from combined and separate heart rate and movement models in children, Med Sci Sports Exerc, 37, 1761, 10.1249/01.mss.0000176466.78408.cc
Kohl, 2000, Assessment of physical activity among children and adolescents: a review and synthesis, Prev Med, 31, S54, 10.1006/pmed.1999.0542
Bailey, 1995, The level and tempo of children’s physical activities: an observational study, Med Sci Sports Exerc, 27, 1033, 10.1249/00005768-199507000-00012
Lamonte, 2001, Quantifying energy expenditure and physical activity in the context of dose response, Med Sci Sports Exerc, 33, S370, 10.1097/00005768-200106001-00006
Bassett, 2000, Validity and reliability issues in objective monitoring of physical activity, Res Q Exerc Sport, 71, S30, 10.1080/02701367.2000.11082783
DeLany, 1996, Energy expenditure, Endocrinol Metab Clin North Am, 25, 831, 10.1016/S0889-8529(05)70357-1
Ainslie, 2003, Estimating human energy expenditure: a review of techniques with particular reference to doubly labelled water, Sports Med, 33, 683, 10.2165/00007256-200333090-00004
Dollman, 2009, A hitchhiker’s guide to assessing young people’s physical activity: deciding what method to use, J Sci Med Sport, 12, 518, 10.1016/j.jsams.2008.09.007
Schutz, 2001, Assessment of free-living physical activity in humans: an overview of currently available and proposed new measures, Obes Res, 9, 368, 10.1038/oby.2001.48
Westerterp, 2009, Assessment of physical activity: a critical appraisal, Eur J Appl Physiol, 105, 823, 10.1007/s00421-009-1000-2
Chen, 2005, The technology of accelerometry-based activity monitors: current and future, Med Sci Sports Exerc, 37, S490, 10.1249/01.mss.0000185571.49104.82
Howley, 2001, Type of activity: resistance, aerobic and leisure versus occupational physical activity, Med Sci Sports Exerc, 33, S364, 10.1097/00005768-200106001-00005
Ainsworth, 2000, Compendium of physical activities: an update of activity codes and MET intensities, Med Sci Sports Exerc, 32, S498, 10.1097/00005768-200009001-00009
Byrne, 2005, Metabolic equivalent: one size does not fit all, J Appl Physiol, 99, 1112, 10.1152/japplphysiol.00023.2004
Leenders, 2001, Evaluation of methods to assess physical activity in free-living conditions, Med Sci Sports Exerc, 33, 1233, 10.1097/00005768-200107000-00024
Racette, 1995, Comparison of heart rate and physical activity recall with doubly labeled water in obese women, Med Sci Sports Exerc, 27, 126, 10.1249/00005768-199501000-00022
DeLany, 2013, Energy requirement methodology, Nutrition in the Prevention and Treatment of Disease, 3rd ed, 81, 10.1016/B978-0-12-391884-0.00004-4
Nelson, 1992, Prediction of resting energy expenditure from fat-free mass and fat mass, Am J Clin Nutr, 56, 848, 10.1093/ajcn/56.5.848
Speakman, 2003, Physical activity and resting metabolic rate, Proc Nutr Soc, 62, 621, 10.1079/PNS2003282
Weinsier, 1992, Reexamination of the relationship of resting metabolic rate to fat-free mass and to the metabolically active components of fat-free mass in humans, Am J Clin Nutr, 55, 790, 10.1093/ajcn/55.4.790
Frisard, 2007, Aging, resting metabolic rate, and oxidative damage: results from the Louisiana Healthy Aging Study, J Gerontol A Biol Sci Med Sci, 62, 752, 10.1093/gerona/62.7.752
Keys, 1973, Basal metabolism and age of adult man, Metabolism, 22, 579, 10.1016/0026-0495(73)90071-1
Luhrmann, 2010, Changes in resting metabolic rate in an elderly German population: cross-sectional and longitudinal data, J Nutr Health Aging, 14, 232, 10.1007/s12603-010-0055-4
Piers, 1998, Is there evidence for an age-related reduction in metabolic rate?, J Appl Physiol, 85, 2196, 10.1152/jappl.1998.85.6.2196
Arciero, 1993, Resting metabolic rate is lower in women than in men, J Appl Physiol, 75, 2514, 10.1152/jappl.1993.75.6.2514
DeLany, 2004, Energy expenditure in African American and white boys and girls in a 2-y follow-up of the Baton Rouge Children’s Study, Am J Clin Nutr, 79, 268, 10.1093/ajcn/79.2.268
Leonard, 2012, Laboratory and field methods for measuring human energy expenditure, Am J Hum Biol, 24, 372, 10.1002/ajhb.22260
Lam, 2014, Determinants of sedentary 24-h energy expenditure: equations for energy prescription and adjustment in a respiratory chamber, Am J Clin Nutr, 99, 834, 10.3945/ajcn.113.079566
de Jonge, 2007, Validation study of energy expenditure and intake during calorie restriction using doubly labeled water and changes in body composition, Am J Clin Nutr, 85, 73, 10.1093/ajcn/85.1.73
Jequier, 1983, Long-term measurements of energy expenditure in humans using a respiration chamber, Am J Clin Nutr, 38, 989, 10.1093/ajcn/38.6.989
Ravussin, 1986, Determinants of 24-hour energy expenditure in man. Methods and results using a respiratory chamber, J Clin Invest, 78, 1568, 10.1172/JCI112749
Weir, 1949, New methods for calculating metabolic rate with special reference to protein metabolism, J Physiol, 109, 1, 10.1113/jphysiol.1949.sp004363
Livesey, 1988, Estimation of energy expenditure, net carbohydrate utilization, and net fat oxidation and synthesis by indirect calorimetry: evaluation of errors with special reference to the detailed composition of fuels, Am J Clin Nutr, 47, 608, 10.1093/ajcn/47.4.608
Schoeller, 1982, Measurement of energy expenditure in humans by doubly labeled water method, J Appl Physiol, 53, 955, 10.1152/jappl.1982.53.4.955
2009, Assessment of Body Composition and Total Energy Expenditure in Humans Using Stable Isotope Techniques
Schoeller, 1984, Five-day comparison of the doubly labeled water method with respiratory gas exchange, Am J Clin Nutr, 40, 153, 10.1093/ajcn/40.1.153
Westerterp, 2004, Physical activity and human energy expenditure, Curr Opin Clin Nutr Metab Care, 7, 607, 10.1097/00075197-200411000-00004
Wong, 2014, The doubly labeled water method produces highly reproducible longitudinal results in nutrition studies, J Nutr, 144, 777, 10.3945/jn.113.187823
Schoeller, 1988, Measurement of energy expenditure in free-living humans by using doubly labeled water, J Nutr, 118, 1278, 10.1093/jn/118.11.1278
Schoeller, 2008, Insights into energy balance from doubly labeled water, Int J Obes, 32, S72, 10.1038/ijo.2008.241
Speakman, 1997, Validation of the labeled bicarbonate technique for measurement of short-term energy expenditure in the mouse, Z Ernahrungswiss, 36, 273, 10.1007/BF01617797
Speakman, 1998, The history and theory of the doubly labeled water technique, Am J Clin Nutr, 68, 932S, 10.1093/ajcn/68.4.932S
Frankenfield, 2005, Comparison of predictive equations for resting metabolic rate in healthy nonobese and obese adults: a systematic review, J Am Diet Assoc, 105, 775, 10.1016/j.jada.2005.02.005
Frankenfield, 1998, The Harris-Benedict studies of human basal metabolism: history and limitations, J Am Diet Assoc, 98, 439, 10.1016/S0002-8223(98)00100-X
Harris, 1918, A biometric study of human basal metabolism, Proc Natl Acad Sci U S A, 4, 370, 10.1073/pnas.4.12.370
Black, 1996, Human energy expenditure in affluent societies: an analysis of 574 doubly-labelled water measurements, Eur J Clin Nutr, 50, 72
Prentice, 1996, Energy expenditure in overweight and obese adults in affluent societies: an analysis of 319 doubly-labelled water measurements, Eur J Clin Nutr, 50, 93
1990, Human Energy Requirements: A Manual for Planners and Nutritionists
Black, 2000, Critical evaluation of energy intake using the Goldberg cut-off for energy intake:basal metabolic rate. A practical guide to its calculation, use and limitations, Int J Obes, 24, 1119, 10.1038/sj.ijo.0801376
Jette, 1990, Metabolic equivalents (METS) in exercise testing, exercise prescription, and evaluation of functional capacity, Clin Cardiol, 13, 555, 10.1002/clc.4960130809
Ainsworth, 2011, 2011 Compendium of physical activities: a second update of codes and MET values, Med Sci Sports Exerc, 43, 1575, 10.1249/MSS.0b013e31821ece12
Ainsworth, 1993, Compendium of physical activities: classification of energy costs of human physical activities, Med Sci Sports Exerc, 25, 71, 10.1249/00005768-199301000-00011
Manson, 1999, A prospective study of walking as compared with vigorous exercise in the prevention of coronary heart disease in women, N Engl J Med, 341, 650, 10.1056/NEJM199908263410904
Blair, 1985, Assessment of habitual physical activity by a seven-day recall in a community survey and controlled experiments, Am J Epidemiol, 122, 794, 10.1093/oxfordjournals.aje.a114163
Bouchard, 1983, A method to assess energy expenditure in children and adults, Am J Clin Nutr, 37, 461, 10.1093/ajcn/37.3.461
Sallis, 1993, Seven-day recall and other physical activity self-reports in children and adolescents, Med Sci Sports Exerc, 25, 99, 10.1249/00005768-199301000-00014
Wilms, 2014, Correction factors for the calculation of metabolic equivalents (MET) in overweight to extremely obese subjects, Int J Obes (Lond), 1, 10.1038/ijo.2014.22
Sirard, 2001, Physical activity assessment in children and adolescents, Sports Med, 31, 439, 10.2165/00007256-200131060-00004
Freedson, 2000, Objective monitoring of physical activity using motion sensors and heart rate, Res Q Exerc Sport, 71, S21, 10.1080/02701367.2000.11082782
Livingstone, 1997, Heart-rate monitoring: the answer for assessing energy expenditure and physical activity in population studies?, Br J Nutr, 78, 869, 10.1079/BJN19970205
Ceesay, 1989, The use of heart rate monitoring in the estimation of energy expenditure: a validation study using indirect whole-body calorimetry, Br J Nutr, 61, 175, 10.1079/BJN19890107
Leonard, 2003, Measuring human energy expenditure: what have we learned from the flex-heart rate method?, Am J Hum Biol, 15, 479, 10.1002/ajhb.10187
Achten, 2003, Heart rate monitoring: applications and limitations, Sports Med, 33, 517, 10.2165/00007256-200333070-00004
Li, 1993, A critical evaluation of heart rate monitoring to assess energy expenditure in individuals, Am J Clin Nutr, 58, 602, 10.1093/ajcn/58.5.602
Luke, 1997, Simultaneous monitoring of heart rate and motion to assess energy expenditure, Med Sci Sports Exerc, 29, 144, 10.1097/00005768-199701000-00021
Stubbs, 2004, Rate and extent of compensatory changes in energy intake and expenditure in response to altered exercise and diet composition in humans, Am J Physiol Regul Integr Comp Physiol, 286, R350, 10.1152/ajpregu.00196.2003
Eston, 1998, Validity of heart rate, pedometry, and accelerometry for predicting the energy cost of children’s activities, J Appl Physiol, 84, 362, 10.1152/jappl.1998.84.1.362
Trost, 1998, Validity of the Computer Science and Applications (CSA) activity monitor in children, Med Sci Sports Exerc, 30, 629, 10.1097/00005768-199804000-00023
Ekelund, 2001, Heart rate as an indicator of the intensity of physical activity in human adolescents, Eur J Appl Physiol, 85, 244, 10.1007/s004210100436
Livingstone, 1992, Daily energy expenditure in free-living children: comparison of heart-rate monitoring with the doubly labeled water (2H2(18)O) method, Am J Clin Nutr, 56, 343, 10.1093/ajcn/56.2.343
1998, The recommended quantity and quality of exercise for developing and maintaining cardiorespiratory and muscular fitness, and flexibility in healthy adults, Med Sci Sports Exerc, 30, 975, 10.1097/00005768-199806000-00032
Le Masurier, 2003, Comparison of pedometer and accelerometer accuracy under controlled conditions, Med Sci Sports Exerc, 35, 867, 10.1249/01.MSS.0000064996.63632.10
Tudor-Locke, 2005, Pedometer-determined step count guidelines for classifying walking intensity in a young ostensibly healthy population, Can J Appl Physiol, 30, 666, 10.1139/h05-147
Melanson, 2004, Commercially available pedometers: considerations for accurate step counting, Prev Med, 39, 361, 10.1016/j.ypmed.2004.01.032
Schneider, 2004, Pedometer measures of free-living physical activity: comparison of 13 models, Med Sci Sports Exerc, 36, 331, 10.1249/01.MSS.0000113486.60548.E9
Schneider, 2003, Accuracy and reliability of 10 pedometers for measuring steps over a 400-m walk, Med Sci Sports Exerc, 35, 1779, 10.1097/00005768-200305001-01572
Tudor-Locke, 2009, Expected values for pedometer-determined physical activity in youth, Res Q Exerc Sport, 80, 164, 10.1080/02701367.2009.10599550
Tudor-Locke, 2006, Evaluation of quality of commercial pedometers, Can J Public Health, 97, S10–5, S10–6
Abel, 2011, A comprehensive evaluation of motion sensor step-counting error, Appl Physiol Nutr Metab, 36, 166, 10.1139/H10-095
Hendelman, 2000, Validity of accelerometry for the assessment of moderate intensity physical activity in the field, Med Sci Sports Exerc, 32, S442, 10.1097/00005768-200009001-00002
Le Masurier, 2004, Motion sensor accuracy under controlled and free-living conditions, Med Sci Sports Exerc, 36, 905, 10.1249/01.MSS.0000126777.50188.73
Abel, 2009, Waist circumference, pedometer placement, and step-counting accuracy in youth, Res Q Exerc Sport, 80, 434, 10.1080/02701367.2009.10599581
Crouter, 2005, Spring-levered versus piezo-electric pedometer accuracy in overweight and obese adults, Med Sci Sports Exerc, 37, 1673, 10.1249/01.mss.0000181677.36658.a8
Crouter, 2006, Estimating energy expenditure using accelerometers, Eur J Appl Physiol, 98, 601, 10.1007/s00421-006-0307-5
Crouter, 2006, A novel method for using accelerometer data to predict energy expenditure, J Appl Physiol, 100, 1324, 10.1152/japplphysiol.00818.2005
Bassey, 1987, Validation of a simple mechanical accelerometer (pedometer) for the estimation of walking activity, Eur J Appl Physiol Occup Physiol, 56, 323, 10.1007/BF00690900
Tudor-Locke, 2001, Methodological considerations for researchers and practitioners using pedometers to measure physical (ambulatory) activity, Res Q Exerc Sport, 72, 1, 10.1080/02701367.2001.10608926
Ridgers, 2011, Assessing free-living physical activity using accelerometry: practical issues for researchers and practitioners, Eur J Sport Sci, 11, 205, 10.1080/17461391.2010.501116
Trost, 2001, Objective measurement of physical activity in youth: current issues, future directions, Exerc Sport Sci Rev, 29, 32, 10.1097/00003677-200101000-00007
van Cauwenberghe, 2011, Calibration and comparison of accelerometer cut points in preschool children, Int J Pediatr Obes, 6, e582, 10.3109/17477166.2010.526223
Oliver, 2007, Pedometer accuracy in physical activity assessment of preschool children, J Sci Med Sport, 10, 303, 10.1016/j.jsams.2006.07.004
Van Cauwenberghe, 2012, Patterns of physical activity and sedentary behaviour in preschool children, Int J Behav Nutr Phys Act, 9, 138, 10.1186/1479-5868-9-138
Corder, 2007, Accelerometers and pedometers: methodology and clinical application, Curr Opin Clin Nutr Metab Care, 10, 597, 10.1097/MCO.0b013e328285d883
de Vries, 2006, Clinimetric review of motion sensors in children and adolescents, J Clin Epidemiol, 59, 670, 10.1016/j.jclinepi.2005.11.020
Oliver, 2007, Physical activity in preschoolers: understanding prevalence and measurement issues, Sports Med, 37, 1045, 10.2165/00007256-200737120-00004
Rowlands, 2007, Accelerometer assessment of physical activity in children: an update, Pediatr Exerc Sci, 19, 252, 10.1123/pes.19.3.252
Ward, 2005, Accelerometer use in physical activity: best practices and research recommendations, Med Sci Sports Exerc, 37, S582, 10.1249/01.mss.0000185292.71933.91
Cliff, 2009, Methodological considerations in using accelerometers to assess habitual physical activity in children aged 0-5 years, J Sci Med Sport, 12, 557, 10.1016/j.jsams.2008.10.008
Pate, 2010, Measurement of physical activity in preschool children, Med Sci Sports Exerc, 42, 508, 10.1249/MSS.0b013e3181cea116
Westerterp, 1999, Physical activity assessment with accelerometers, Int J Obes, 23, S45, 10.1038/sj.ijo.0800883
Corder, 2009, Is it possible to assess free-living physical activity and energy expenditure in young people by self-report?, Am J Clin Nutr, 89, 862, 10.3945/ajcn.2008.26739
Van Cauwenberghe, 2011, Feasibility and validity of accelerometer measurements to assess physical activity in toddlers, Int J Behav Nutr Phys Act, 8, 67, 10.1186/1479-5868-8-67
Reilly, 2008, Objective measurement of physical activity and sedentary behaviour: review with new data, Arch Dis Child, 93, 614, 10.1136/adc.2007.133272
Biddle, 2004, Physical activity and sedentary behaviours in youth: issues and controversies, J R Soc Promot Health, 124, 29, 10.1177/146642400312400110
Reilly, 2003, An objective method for measurement of sedentary behavior in 3- to 4-year olds, Obes Res, 11, 1155, 10.1038/oby.2003.158
Hardy, 2013, A hitchhiker’s guide to assessing sedentary behaviour among young people: deciding what method to use, J Sci Med Sport, 16, 28, 10.1016/j.jsams.2012.05.010
Lubans, 2011, A systematic review of the validity and reliability of sedentary behaviour measures used with children and adolescents, Obes Rev, 12, 781, 10.1111/j.1467-789X.2011.00896.x
Bland, 1986, Statistical methods for assessing agreement between two methods of clinical measurement, Lancet, 1, 307, 10.1016/S0140-6736(86)90837-8
Sallis, 1991, Self-report measures of children’s physical activity, J Sch Health, 61, 215, 10.1111/j.1746-1561.1991.tb06017.x
Andersen, 2006, Physical activity and clustered cardiovascular risk in children: a cross-sectional study (The European Youth Heart Study), Lancet, 368, 299, 10.1016/S0140-6736(06)69554-8
Ness, 2007, Objectively measured physical activity and fat mass in a large cohort of children, PLoS Med, 4, e97, 10.1371/journal.pmed.0040097
Wareham, 2005, Physical activity and obesity prevention: a review of the current evidence, Proc Nutr Soc, 64, 229, 10.1079/PNS2005460
Riddoch, 2004, Physical activity levels and patterns of 9- and 15-yr-old European children, Med Sci Sports Exerc, 36, 86, 10.1249/01.MSS.0000106174.43932.92
Bouten, 1996, Daily physical activity assessment: comparison between movement registration and doubly labeled water, J Appl Physiol, 81, 1019, 10.1152/jappl.1996.81.2.1019
Plasqui, 2007, Physical activity assessment with accelerometers: an evaluation against doubly labeled water, Obesity, 15, 2371, 10.1038/oby.2007.281
Bouten, 1997, A triaxial accelerometer and portable data processing unit for the assessment of daily physical activity, IEEE Trans Biomed Eng, 44, 136, 10.1109/10.554760
Bouten, 1997, Effects of placement and orientation of body-fixed accelerometers on the assessment of energy expenditure during walking, Med Biol Eng Comput, 35, 50, 10.1007/BF02510392
Brage, 2003, Reexamination of validity and reliability of the CSA monitor in walking and running, Med Sci Sports Exerc, 35, 1447, 10.1097/00005768-200305001-01573
Howe, 2009, Accelerometer prediction of energy expenditure: vector magnitude versus vertical axis, Med Sci Sports Exerc, 41, 2199, 10.1249/MSS.0b013e3181aa3a0e
Maddison, 2009, Estimating energy expenditure with the RT3 triaxial accelerometer, Res Q Exerc Sport, 80, 249, 10.1080/02701367.2009.10599559
Plasqui, 2005, Accelerometry and heart rate as a measure of physical fitness: proof of concept, Med Sci Sports Exerc, 37, 872, 10.1249/01.MSS.0000161805.61893.C0
Freedson, 1998, Calibration of the Computer Science and Applications, Inc. accelerometer, Med Sci Sports Exerc, 30, 777, 10.1097/00005768-199805000-00021
Rowlands, 2004, Validation of the RT3 triaxial accelerometer for the assessment of physical activity, Med Sci Sports Exerc, 36, 518, 10.1249/01.MSS.0000117158.14542.E7
Swartz, 2000, Estimation of energy expenditure using CSA accelerometers at hip and wrist sites, Med Sci Sports Exerc, 32, S450, 10.1097/00005768-200009001-00003
Dencker, 2008, Health-related aspects of objectively measured daily physical activity in children, Clin Physiol Funct Imaging, 28, 133, 10.1111/j.1475-097X.2008.00788.x
Puyau, 2002, Validation and calibration of physical activity monitors in children, Obes Res, 10, 150, 10.1038/oby.2002.24
Sirard, 2005, Physical activity and active commuting to elementary school, Med Sci Sports Exerc, 37, 2062, 10.1249/01.mss.0000179102.17183.6b
Gutin, 2005, Relations of moderate and vigorous physical activity to fitness and fatness in adolescents, Am J Clin Nutr, 81, 746, 10.1093/ajcn/81.4.746
Kolle, 2010, Objectively assessed physical activity and aerobic fitness in a population-based sample of Norwegian 9- and 15-year-olds, Scand J Med Sci Sports, 20, e41, 10.1111/j.1600-0838.2009.00892.x
Kristensen, 2010, The association between aerobic fitness and physical activity in children and adolescents: the European youth heart study, Eur J Appl Physiol, 110, 267, 10.1007/s00421-010-1491-x
Dencker, 2010, Objectively measured daily physical activity related to aerobic fitness in young children, J Sports Sci, 28, 139, 10.1080/02640410903460726
Treuth, 2004, Defining accelerometer thresholds for activity intensities in adolescent girls, Med Sci Sports Exerc, 36, 1259
Olds, 2012, The elasticity of time: associations between physical activity and use of time in adolescents, Health Educ Behav, 39, 732, 10.1177/1090198111429822
Troiano, 2008, Physical activity in the United States measured by accelerometer, Med Sci Sports Exerc, 40, 181, 10.1249/mss.0b013e31815a51b3
Welk, 2004, Reliability of accelerometry-based activity monitors: a generalizability study, Med Sci Sports Exerc, 36, 1637
Brage, 2004, Branched equation modeling of simultaneous accelerometry and heart rate monitoring improves estimate of directly measured physical activity energy expenditure, J Appl Physiol (1985), 96, 343, 10.1152/japplphysiol.00703.2003
Powell, 2003, Technical variability of the RT3 accelerometer, Med Sci Sports Exerc, 35, 1773, 10.1249/01.MSS.0000089341.68754.BA
Heil, 2012, Modeling physical activity outcomes from wearable monitors, Med Sci Sports Exerc, 44, S50, 10.1249/MSS.0b013e3182399dcc
Mannini, 2013, Activity recognition using a single accelerometer placed at the wrist or ankle, Med Sci Sports Exerc, 45, 2193, 10.1249/MSS.0b013e31829736d6
De Vries, 2009, Validity and reproducibility of motion sensors in youth: a systematic update, Med Sci Sports Exerc, 41, 818, 10.1249/MSS.0b013e31818e5819
Trost, 2005, Conducting accelerometer-based activity assessments in field-based research, Med Sci Sports Exerc, 37, S531, 10.1249/01.mss.0000185657.86065.98
Van Cauwenberghe, 2012, Comparison of actical and activPAL measures of sedentary behaviour in preschool children, J Sci Med Sport, 15, 526, 10.1016/j.jsams.2012.03.014
Pate, 2006, Validation and calibration of an accelerometer in preschool children, Obesity, 14, 2000, 10.1038/oby.2006.234
Pfeiffer, 2009, Factors related to objectively measured physical activity in preschool children, Pediatr Exerc Sci, 21, 196, 10.1123/pes.21.2.196
Haskell, 1993, Simultaneous measurement of heart rate and body motion to quantitate physical activity, Med Sci Sports Exerc, 25, 109, 10.1249/00005768-199301000-00015
Livingstone, 2000, Energy expenditure by heart rate in children: an evaluation of calibration techniques, Med Sci Sports Exerc, 32, 1513, 10.1097/00005768-200008000-00022
Hiilloskorpi, 2003, Use of heart rate to predict energy expenditure from low to high activity levels, Int J Sports Med, 24, 332, 10.1055/s-2003-40701
Brage, 2005, Reliability and validity of the combined heart rate and movement sensor actiheart, Eur J Clin Nutr, 59, 561, 10.1038/sj.ejcn.1602118
Dunton, 2014, Development of a smartphone application to measure physical activity using sensor-assisted self-report, Front Public Health, 2, 12, 10.3389/fpubh.2014.00012
Hurvitz, 2014, Emerging technologies for assessing physical activity behaviors in space and time, Front Public Health, 2, 2, 10.3389/fpubh.2014.00002
Casiraghi, 2013, Energy expenditure evaluation in humans and non-human primates by SenseWear Armband. Validation of energy expenditure evaluation by SenseWear Armband by direct comparisoin with indirect calorimetry, PLoS One, 8, e73651, 10.1371/journal.pone.0073651
Calabro, 2013, Validation of pattern-recognition monitors in children using doubly labelled water, Med Sci Sports Exerc, 45, 1313, 10.1249/MSS.0b013e31828579c3
Slinde, 2013, Energy expenditure by multisensor armband in overweight and obese lactating women validated by doubly labeled water, Obesity, 21, 2231, 10.1002/oby.20363
Whybrow, 2013, An evaluation of the IDEEA activity monitor for estimating energy expenditure, Br J Nutr, 109, 173, 10.1017/S0007114512000645
Zhang, 2004, Improving energy expenditure estimation for physical activity, Med Sci Sports Exerc, 36, 883, 10.1249/01.MSS.0000126585.40962.22
Maffiuletti, 2008, Concurrent validity and intrasession reliability of the IDEEA accelerometry system for the quantification of spatiotemporal gait parameters, Gait Posture, 27, 160, 10.1016/j.gaitpost.2007.01.003
Welk, 2007, Field validation of the MTI actigraph and bodymedia armband monitor using the IDEEA monitor, Obesity, 15, 918, 10.1038/oby.2007.624
Larsen, 2010, The diet, obesity and genes (diogenes) dietary study in eight European countries – a comprehensive design for long-term intervention, Obes Rev, 11, 76, 10.1111/j.1467-789X.2009.00603.x
Gorelick, 2009, Test-retest reliability of the IDEEA system in the quantification of step parameters during walking and stair climbing, Clin Physiol Funct Imaging, 29, 271, 10.1111/j.1475-097X.2009.00864.x
Ermes, 2008, Detection of daily activities and sports with wearable sensors in controlled and uncontrolled conditions, IEEE Trans Inf Technol Biomed, 12, 20, 10.1109/TITB.2007.899496
Karantonis, 2006, Implementation of a real-time human movement classifier using a triaxial accelerometer for ambulatory monitoring, IEEE Trans Inf Technol Biomed, 10, 156, 10.1109/TITB.2005.856864
Bonomi, 2009, Detection of type, duration, and intensity of physical activity using an accelerometer, Med Sci Sports Exerc, 41, 1770, 10.1249/MSS.0b013e3181a24536
Bonomi, 2009, Improving assessment of daily energy expenditure by identifying types of physical activity with a single accelerometer, J Appl Physiol, 107, 655, 10.1152/japplphysiol.00150.2009
Lyden, 2014, A method to estimate free-living active and sedentary behavior from an accelerometer, Med Sci Sports Exerc, 46, 386, 10.1249/MSS.0b013e3182a42a2d
Dannecker, 2013, A comparison of energy expenditure estimation of several physical activity monitors, Med Sci Sports Exerc, 45, 2105, 10.1249/MSS.0b013e318299d2eb
Adam Noah, 2013, Comparison of steps and energy expenditure assessment in adults of Fitbit Tracker and Ultra to the Actical and indirect calorimetry, J Med Eng Technol, 37, 456, 10.3109/03091902.2013.831135
Shephard, 2003, Limits to the measurement of habitual physical activity by questionnaires, Br J Sports Med, 37, 197, 10.1136/bjsm.37.3.197
Van Remoortel, 2012, Validity of activity monitors in health and chronic disease: a systematic review, Int J Behav Nutr Phys Act, 9, 84, 10.1186/1479-5868-9-84
Van Remoortel, 2012, Validity of six activity monitors in chronic obstructive pulmonary disease: a comparison with indirect calorimetry, PLoS One, 7, e39198, 10.1371/journal.pone.0039198
Nielsen, 2008, Energy intake variability in free-living young children, Arch Dis Child, 93, 971, 10.1136/adc.2007.134486
Troiano, 2009, Can there be a single best measure of reported physical activity?, Am J Clin Nutr, 89, 736, 10.3945/ajcn.2008.27461
Bassett, 2000, Measurement of daily walking distance-questionnaire versus pedometer, Med Sci Sports Exerc, 32, 1018, 10.1097/00005768-200005000-00021
Spadano, 2003, Energy cost of physical activities in 12-y-old girls: MET values and the influence of body weight, Int J Obes, 27, 1528, 10.1038/sj.ijo.0802440
Harrell, 2005, Energy costs of physical activities in children and adolescents, Med Sci Sports Exerc, 37, 329, 10.1249/01.MSS.0000153115.33762.3F
Ridley, 2008, Development of a compendium of energy expenditures for youth, Int J Behav Nutr Phys Act, 5, 45, 10.1186/1479-5868-5-45
Ellery, 2014, Physical activity assessment tools for use in overweight and obese children, Int J Obes, 38, 1, 10.1038/ijo.2013.125
Corder, 2008, Assessment of physical activity in youth, J Appl Physiol, 105, 977, 10.1152/japplphysiol.00094.2008
Arvidsson, 2005, Physical activity questionnaire for adolescents validated against doubly labelled water, Eur J Clin Nutr, 59, 376, 10.1038/sj.ejcn.1602084
Slinde, 2003, Minnesota leisure time activity questionnaire and doubly labeled water in adolescents, Med Sci Sports Exerc, 35, 1923, 10.1249/01.MSS.0000093608.95629.85
Janz, 2008, Measuring activity in children and adolescents using self-report: PAQ-C and PAQ-A, Med Sci Sports Exerc, 40, 767, 10.1249/MSS.0b013e3181620ed1
Philippaerts, 2006, Validity of a physical activity computer questionnaire in 12- to 18-year-old boys and girls, Int J Sports Med, 27, 131, 10.1055/s-2005-837619
Corder, 2007, Comparison of two methods to assess PAEE during six activities in children, Med Sci Sports Exerc, 39, 2180, 10.1249/mss.0b013e318150dff8
Ekelund, 2001, Physical activity assessed by activity monitor and doubly labeled water in children, Med Sci Sports Exerc, 33, 275, 10.1097/00005768-200102000-00017
Patterson, 2000, Reliability, validity, and methodological response to the assessment of physical activity via self-report, Res Q Exerc Sport, 71, S15, 10.1080/02701367.2000.11082781
Neilson, 2008, Estimating activity energy expenditure: how valid are physical activity questionnaires?, Am J Clin Nutr, 87, 279, 10.1093/ajcn/87.2.279
Ridley, 2006, The multimedia activity recall for children and adolescents (MARCA): development and evaluation, Int J Behav Nutr Phys Act, 3, 10, 10.1186/1479-5868-3-10
Gomersall, 2011, Development and evaluation of an adult use-of-time instrument with an energy expenditure focus, J Sci Med Sport, 14, 143, 10.1016/j.jsams.2010.08.006
Foley, 2012, Self-report use-of-time tools for the assessment of physical activity and sedentary behaviour in young people: systematic review, Obes Rev, 13, 711, 10.1111/j.1467-789X.2012.00993.x