Validation of an activity monitor for children who are partly or completely wheelchair-dependent
暂无分享,去创建一个
[1] F. Q. Ribeiro. The meta-analysis , 2017, Brazilian journal of otorhinolaryngology.
[2] C. Magnussen,et al. When to prevent cardiovascular disease? As early as possible: lessons from prospective cohorts beginning in childhood , 2013, Current opinion in cardiology.
[3] Johannes B. J. Bussmann,et al. To total amount of activity….. and beyond: perspectives on measuring physical behavior , 2013, Front. Psychol..
[4] R A Cooper,et al. Physical activity classification utilizing SenseWear activity monitor in manual wheelchair users with spinal cord injury , 2013, Spinal Cord.
[5] Stephen Sprigle,et al. Validation of an accelerometer-based method to measure the use of manual wheelchairs. , 2012, Medical engineering & physics.
[6] M. Pinquart,et al. Academic, physical, and social functioning of children and adolescents with chronic physical illness: a meta-analysis. , 2012, Journal of pediatric psychology.
[7] J. Bussmann,et al. A more active lifestyle in persons with a recent spinal cord injury benefits physical fitness and health , 2011, Spinal Cord.
[8] J. Bussmann,et al. Validation of the Physical Activity Scale for individuals with physical disabilities. , 2011, Archives of physical medicine and rehabilitation.
[9] L. Andersen,et al. Physical activity, fitness and health in children , 2011, Scandinavian journal of medicine & science in sports.
[10] M. Granat,et al. Development and validation of a physical activity monitor for use on a wheelchair , 2011, Spinal Cord.
[11] J. Bussmann,et al. Accelerometry-based activity spectrum in persons with chronic physical conditions. , 2010, Archives of physical medicine and rehabilitation.
[12] Yeh-Liang Hsu,et al. A Review of Accelerometry-Based Wearable Motion Detectors for Physical Activity Monitoring , 2010, Sensors.
[13] H. Stam,et al. Lifestyle, participation, and health‐related quality of life in adolescents and young adults with myelomeningocele , 2009, Developmental medicine and child neurology.
[14] J. Bussmann,et al. Ambulatory activity monitoring: Progress in measurement of activity, posture, and specific motion patterns in daily life. , 2009 .
[15] J. Eng,et al. Physical activity is related to lower levels of pain, fatigue and depression in individuals with spinal-cord injury: a correlational study , 2009, Spinal Cord.
[16] Klaas R. Westerterp,et al. Assessment of physical activity: a critical appraisal , 2009, European Journal of Applied Physiology.
[17] Wim G. M. Janssen,et al. Cardiovascular disease risk factors and the relationships with physical activity, aerobic fitness, and body fat in adolescents and young adults with myelomeningocele. , 2008, Archives of physical medicine and rehabilitation.
[18] J. Whitney,et al. Measurement and description of physical activity in adult manual wheelchair users. , 2008, Disability and health journal.
[19] J. Shaw,et al. Breaks in Sedentary Time , 2008, Diabetes Care.
[20] P. Rosenbaum,et al. Development of the Gross Motor Function Classification System for cerebral palsy , 2008, Developmental medicine and child neurology.
[21] H J Stam,et al. Validity of the detection of wheelchair propulsion as measured with an Activity Monitor in patients with spinal cord injury , 2005, Spinal Cord.
[22] S. Biddle,et al. Health-enhancing physical activity and sedentary behaviour in children and adolescents , 2004, Journal of sports sciences.
[23] J B Bussmann,et al. Everyday physical activity in adolescents and young adults with meningomyelocele as measured with a novel activity monitor. , 2001, The Journal of pediatrics.
[24] J. B. J. Bussmann,et al. Measuring daily behavior using ambulatory accelerometry: The Activity Monitor , 2001, Behavior research methods, instruments, & computers : a journal of the Psychonomic Society, Inc.
[25] J B Bussmann,et al. Measuring physical strain during ambulation with accelerometry. , 2000, Medicine and science in sports and exercise.
[26] E. Wood,et al. The Gross Motor Function Classification System for Cerebral Palsy: a study of reliability and stability over time , 2000, Developmental medicine and child neurology.
[27] Scott J Strath,et al. Accelerometer use with children, older adults, and adults with functional limitations. , 2012, Medicine and science in sports and exercise.
[28] H. Stam,et al. Triad of physical activity, aerobic fitness and obesity in adolescents and young adults with myelomeningocele. , 2008, Journal of rehabilitation medicine.
[29] G. Heath,et al. Physical activity among persons with disabilities--a public health perspective. , 1997, Exercise and sport sciences reviews.
[30] D. Schoeller,et al. Body Composition and Energy Expenditure in Adolescents with Cerebral Palsy or Myelodysplasia , 1991, Pediatric Research.
[31] Charles C. Bonnett,et al. Functional ambulation in patients with myelomeningocele. , 1973, The Journal of bone and joint surgery. American volume.