Exergaming for individuals with neurological disability: a systematic review
暂无分享,去创建一个
Nazirah Hasnan | Ruby Husain | Hadi Mat Rosly | Maziah Mat Rosly | Maziah Mat Rosly | Hadi Mat Rosly | N. Hasnan | R. Husain | Glen M Davis Oam | H. Mat Rosly
[1] G. Kwakkel,et al. Effects of Exercise Training Programs on Walking Competency After Stroke: A Systematic Review , 2007, American journal of physical medicine & rehabilitation.
[2] Wahman Kerstin,et al. What promotes physical activity after spinal cord injury? An interview study from a patient perspective , 2006, Disability and rehabilitation.
[3] H. Graham,et al. Uptime in Children With Cerebral Palsy , 2004, Journal of pediatric orthopedics.
[4] Paul M. Blobaum. Physiotherapy Evidence Database (PEDro) , 2006 .
[5] Carol Ewing Garber,et al. ACSM Position Stand: The Recommended Quantity and Quality of Exercise for Developing and Maintaining Cardiorespiratory and Muscular Fitness, and Flexibility in Healthy Adults , 1998 .
[6] J. Hussey,et al. Energy expended playing Xbox Kinect™ and Wii™ games: a preliminary study comparing single and multiplayer modes. , 2012, Physiotherapy.
[7] A. Hicks,et al. Maintenance of exercise participation in individuals with spinal cord injury: effects on quality of life, stress and pain , 2003, Spinal Cord.
[8] Thilo Kroll,et al. Staying physically active after spinal cord injury: a qualitative exploration of barriers and facilitators to exercise participation , 2009, BMC public health.
[9] G. Atkinson,et al. The physiological cost and enjoyment of Wii Fit in adolescents, young adults, and older adults. , 2010, Journal of physical activity & health.
[10] Robert Ross,et al. Incidental physical activity is positively associated with cardiorespiratory fitness. , 2011, Medicine and science in sports and exercise.
[11] Henk J Stam,et al. A prospective study on physical activity levels after spinal cord injury during inpatient rehabilitation and the year after discharge. , 2008, Archives of physical medicine and rehabilitation.
[12] L. V. D. van der Woude,et al. Physical strain in daily life of wheelchair users with spinal cord injuries. , 1994, Medicine and science in sports and exercise.
[13] Gregory A. Brown,et al. Wii, Kinect, and Move. Heart Rate, Oxygen Consumption, Energy Expenditure, and Ventilation due to Different Physically Active Video Game Systems in College Students , 2014, International journal of exercise science.
[14] Judith E. Deutsch,et al. Energy Expenditure and Exercise Intensity of Interactive Video Gaming in Individuals Poststroke , 2014, Neurorehabilitation and neural repair.
[15] D. Wolfe,et al. The effects of exercise training on physical capacity, strength, body composition and functional performance among adults with spinal cord injury: a systematic review , 2011, Spinal Cord.
[16] B. Ekblom,et al. Aerobic power during maximal exercise in untrained and well-trained persons with quadriplegia and paraplegia. , 1988, Scandinavian journal of rehabilitation medicine.
[17] Haruka Murakami,et al. Home-based active video games to promote weight loss during the postpartum period. , 2014, Medicine and science in sports and exercise.
[18] Kenta Yamamoto,et al. METs in adults while playing active video games: a metabolic chamber study. , 2009, Medicine and science in sports and exercise.
[19] K. M. Ginis,et al. Activities of daily living performed by individuals with SCI: relationships with physical fitness and leisure time physical activity , 2009, Spinal Cord.
[20] P. Jacobs,et al. Exercise Recommendations for Individuals with Spinal Cord Injury , 2004, Sports medicine.
[21] J. Eng,et al. Exercise perceptions among people with stroke: Barriers and facilitators to participation. , 2011, International journal of therapy and rehabilitation.
[22] J. Rimmer,et al. Feasibility of Using Active Video Gaming as a Means for Increasing Energy Expenditure in Three Nonambulatory Young Adults With Disabilities , 2012, PM & R : the journal of injury, function, and rehabilitation.
[23] Sandra L. Calvert,et al. Wii Tennis Play for Low-Income African American Adolescents' Energy Expenditure. , 2011, Cyberpsychology.
[24] Henk J Stam,et al. Energy expenditure in chronic stroke patients playing Wii Sports: a pilot study , 2011, Journal of NeuroEngineering and Rehabilitation.
[25] Henk J Stam,et al. Perceived barriers to and facilitators of physical activity in young adults with childhood-onset physical disabilities. , 2009, Journal of rehabilitation medicine.
[26] Hans Bussmann,et al. Barriers to and facilitators of everyday physical activity in persons with a spinal cord injury after discharge from the rehabilitation centre. , 2008, Journal of rehabilitation medicine.
[27] D. Wolfe,et al. The development of evidence-informed physical activity guidelines for adults with spinal cord injury , 2011, Spinal Cord.
[28] A. Buchholz,et al. Differences in resting metabolic rate between paraplegic and able-bodied subjects are explained by differences in body composition. , 2003, The American journal of clinical nutrition.
[29] Jacqueline Kerr,et al. Exergames for subsyndromal depression in older adults: a pilot study of a novel intervention. , 2010, The American journal of geriatric psychiatry : official journal of the American Association for Geriatric Psychiatry.
[30] C. Matthews,et al. Too much sitting: the population health science of sedentary behavior. , 2010, Exercise and sport sciences reviews.
[31] E. McAuley,et al. The physical activity scale for individuals with physical disabilities: development and evaluation. , 2002, Archives of physical medicine and rehabilitation.
[32] M. Nash,et al. Physiological responses to exergaming after spinal cord injury. , 2012, Topics in spinal cord injury rehabilitation.
[33] J. Després,et al. American College of Sports Medicine Position Stand. The recommended quantity and quality of exercise for developing and maintaining cardiorespiratory and muscular fitness, and flexibility in healthy adults. , 1998, Medicine and science in sports and exercise.
[34] K. M. Ginis,et al. Physical activity and subjective well-being among people with spinal cord injury: a meta-analysis , 2010, Spinal Cord.
[35] J. Eng,et al. Daily physical activity and its contribution to the health-related quality of life of ambulatory individuals with chronic stroke , 2010, Health and quality of life outcomes.
[36] J. Darrah,et al. A systematic review of the effectiveness of aerobic exercise interventions for children with cerebral palsy: an AACPDM evidence report , 2008, Developmental medicine and child neurology.
[37] R. Abresch,et al. Effectiveness of an Upper Extremity Exercise Device Integrated With Computer Gaming for Aerobic Training in Adolescents With Spinal Cord Dysfunction , 2006, The journal of spinal cord medicine.
[38] A. Buchholz,et al. Physical activity levels are low in free-living adults with chronic paraplegia. , 2003, Obesity research.
[39] D. Rand,et al. Sony PlayStation EyeToy elicits higher levels of movement than the Nintendo Wii: implications for stroke rehabilitation. , 2013, European journal of physical and rehabilitation medicine.
[40] Julia O. Totosy de Zepetnek,et al. A 16-week randomized controlled trial evaluating the physical activity guidelines for adults with spinal cord injury , 2014, Spinal Cord.
[41] H. Stam,et al. Energy expenditure in adults with cerebral palsy playing Wii Sports. , 2010, Archives of physical medicine and rehabilitation.
[42] Femida Gwadry-Sridhar,et al. Moving Beyond the Stigma: Systematic Review of Video Games and Their Potential to Combat Obesity , 2011, International journal of hypertension.
[43] E. Biddiss,et al. Active video game play in children with cerebral palsy: potential for physical activity promotion and rehabilitation therapies. , 2012, Archives of physical medicine and rehabilitation.
[44] Laurent Ballaz,et al. Exercise Intensity Levels in Children With Cerebral Palsy While Playing With an Active Video Game Console , 2013, Physical Therapy.
[45] Shirley G Fitzgerald,et al. Kinetic and physiological analysis of the GAME(Wheels) system. , 2002, Journal of rehabilitation research and development.
[46] G. Felzani,et al. Correlates of low testosterone in men with chronic spinal cord injury , 2014, Andrology.
[47] N. Cable,et al. Comparison of energy expenditure in adolescents when playing new generation and sedentary computer games: cross sectional study , 2007, BMJ : British Medical Journal.
[48] J. Bernhardt,et al. A mapping study on physical activity in stroke rehabilitation: establishing the baseline. , 2013, Journal of rehabilitation medicine.
[49] G. Mead,et al. Physical Activity after Stroke: A Systematic Review and Meta-Analysis , 2013 .
[50] Jacqueline Raymond,et al. Energy expenditure in individuals with spinal cord injury quantified by doubly labeled water and a multi-sensor armband. , 2015, Journal of physical activity & health.
[51] Tamilyn Bakas,et al. Barriers and Facilitators to Exercise Among Stroke Survivors , 2007, Rehabilitation nursing : the official journal of the Association of Rehabilitation Nurses.