Virtual Reality As a Training Tool to Treat Physical Inactivity in Children
暂无分享,去创建一个
[1] C. Tudor-Locke,et al. Health‐Related Quality of Life and Lifestyle Behavior Clusters in School‐Aged Children from 12 Countries , 2017, The Journal of pediatrics.
[2] Daniel C. Krawczyk,et al. Virtual Reality Social Cognition Training for children with high functioning autism , 2016, Comput. Hum. Behav..
[3] Zhang Tong,et al. Virtual Reality in Neurorehabilitation , 2016 .
[4] Adam W. Kiefer,et al. Training the Developing Brain Part II: Cognitive Considerations for Youth Instruction and Feedback , 2015, Current sports medicine reports.
[5] J. Skelton,et al. Prevalence and trends in obesity and severe obesity among children in the United States, 1999-2012. , 2014, JAMA pediatrics.
[6] T. Hewett,et al. Dosage Effects of Neuromuscular Training Intervention to Reduce Anterior Cruciate Ligament Injuries in Female Athletes: Meta- and Sub-Group Analyses , 2014, Sports Medicine.
[7] Juho Hamari,et al. Does Gamification Work? -- A Literature Review of Empirical Studies on Gamification , 2014, 2014 47th Hawaii International Conference on System Sciences.
[8] G. Myer,et al. Youth resistance training: past practices, new perspectives, and future directions. , 2013, Pediatric exercise science.
[9] G. Myer,et al. How Young Is Too Young to Start Training? , 2013, ACSM's health & fitness journal.
[10] Joseph F. Clark,et al. Training the Developing Brain, Part I: Cognitive Developmental Considerations for Training Youth , 2013, Current sports medicine reports.
[11] T. Hewett,et al. Exercise Deficit Disorder in Youth: A Paradigm Shift toward Disease Prevention and Comprehensive Care , 2013, Current sports medicine reports.
[12] G. Myer,et al. The Role of the Pediatric Exercise Specialist in Treating Exercise Deficit Disorder in Youth , 2013 .
[13] C. Boesch,et al. Effects of Aerobic Versus Resistance Exercise Without Caloric Restriction on Abdominal Fat, Intrahepatic Lipid, and Insulin Sensitivity in Obese Adolescent Boys , 2012, Diabetes.
[14] John J. McNeil,et al. Obesity and Trends in Life Expectancy , 2012, Journal of obesity.
[15] M. Duncan,et al. Functional Movement Is Negatively Associated with Weight Status and Positively Associated with Physical Activity in British Primary School Children , 2012, Journal of obesity.
[16] G. Myer,et al. Exercise deficit disorder in youth: a hidden truth , 2011, Acta paediatrica.
[17] F. Naclerio,et al. Effects of integrative neuromuscular training on fitness performance in children. , 2011, Pediatric exercise science.
[18] Kevin R Ford,et al. When to Initiate Integrative Neuromuscular Training to Reduce Sports-Related Injuries and Enhance Health in Youth? , 2011, Current sports medicine reports.
[19] T. Hewett,et al. Integrative Training for Children and Adolescents: Techniques and Practices for Reducing Sports-Related Injuries and Enhancing Athletic Performance , 2011, The Physician and sportsmedicine.
[20] G. Wulf,et al. Increased jump height and reduced EMG activity with an external focus. , 2010, Human movement science.
[21] A. Majnemer,et al. Virtual reality as a therapeutic modality for children with cerebral palsy , 2010, Developmental neurorehabilitation.
[22] P. Morgan,et al. Childhood motor skill proficiency as a predictor of adolescent physical activity. , 2009, The Journal of adolescent health : official publication of the Society for Adolescent Medicine.
[23] Bryan K. Smith,et al. American College of Sports Medicine Position Stand. Appropriate physical activity intervention strategies for weight loss and prevention of weight regain for adults. , 2009, Medicine and science in sports and exercise.
[24] P. Morgan,et al. Does childhood motor skill proficiency predict adolescent fitness? , 2008, Medicine and science in sports and exercise.
[25] Linda B. Smith,et al. A Dynamic Systems Approach to the Development of Cognition and Action , 2007, Journal of Cognitive Neuroscience.
[26] S. Barlow,et al. Expert committee recommendations regarding the prevention, assessment, and treatment of child and adolescent overweight and obesity: summary report. , 2007, Pediatrics.
[27] Kevin Shockley,et al. Rotational inertia and multimodal heaviness perception , 2007, Psychonomic bulletin & review.
[28] K. Shockley,et al. Rotational kinematics influence multimodal perception of heaviness , 2007, Psychonomic bulletin & review.
[29] W. H. Warren. The dynamics of perception and action. , 2006, Psychological review.
[30] Patrice L. Weiss,et al. Textbook of Neural Repair and Rehabilitation: Virtual reality in neurorehabilitation , 2006 .
[31] Kathleen A. Turano,et al. Optic-flow and egocentric-direction strategies in walking: Central vs peripheral visual field , 2005, Vision Research.
[32] A. Sanabria,et al. Randomized controlled trial. , 2005, World journal of surgery.
[33] B. Thomas,et al. The efficacy of playing a virtual reality game in modulating pain for children with acute burn injuries: A randomized controlled trial [ISRCTN87413556] , 2005, BMC pediatrics.
[34] B. Rothbaum,et al. A pilot and feasibility study of virtual reality as a distraction for children with cancer. , 2004, Journal of the American Academy of Child and Adolescent Psychiatry.
[35] Timothy G Buchman,et al. In vivo, in vitro, in silico... , 2004, Critical care medicine.
[36] H. Benjamin,et al. Choosing a strength training program for kids. , 2003, The Physician and sportsmedicine.
[37] M. Tarr,et al. Virtual reality in behavioral neuroscience and beyond , 2002, Nature Neuroscience.
[38] M. Bonnard,et al. Interaction between different sensory cues in the control of human gait , 2002, Experimental Brain Research.
[39] W. Prinz,et al. Directing attention to movement effects enhances learning: A review , 2001, Psychonomic bulletin & review.
[40] C. Shea,et al. The automaticity of complex motor skill learning as a function of attentional focus , 2001, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[41] William H. Warren,et al. Optic flow is used to control human walking , 2001, Nature Neuroscience.
[42] J. Gibson. Visually controlled locomotion and visual orientation in animals. , 1998, British journal of psychology.
[43] W. Berger,et al. Visual influence on human locomotion Modulation to changes in optic flow , 1997, Experimental Brain Research.
[44] G. Mesibov,et al. Brief report: Two case studies using virtual reality as a learning tool for autistic children , 1996, Journal of autism and developmental disorders.
[45] Benoît G. Bardy,et al. Motion parallax is used to control postural sway during walking , 1996, Experimental Brain Research.
[46] E. Goldfield. Emergent Forms: Origins and Early Development of Human Action and Perception , 1995 .
[47] Thomas B. Sheridan,et al. Musings on Telepresence and Virtual Presence , 1992, Presence: Teleoperators & Virtual Environments.
[48] J. Pailhous,et al. Unintentional modulations of human gait by optical flow , 1990, Behavioural Brain Research.
[49] W. Steffee,et al. Exercise as an adjunct to weight loss and maintenance in moderately obese subjects. , 1989, The American journal of clinical nutrition.
[50] J.,et al. Optic Flow , 2014, Computer Vision, A Reference Guide.
[51] William H. Warren,et al. VR-Based Assessment and Rehabilitation of Functional Mobility , 2013 .
[52] W. H. Warren,et al. 2.12 – Optic Flow , 2008 .
[53] Betty J. Mohler,et al. Calibration of locomotion resulting from visual motion in a treadmill-based virtual environment , 2007, TAP.
[54] S. Baker,et al. Summary Report , 2006 .
[55] C. Hofsten. On the development of perception and action. , 2003 .
[56] Michael Mao,et al. The hidden truth , 1998, SIGGRAPH '98.
[57] B A Kay,et al. Visual control of posture during walking: functional specificity. , 1996, Journal of experimental psychology. Human perception and performance.
[58] W. Warren. Action modes and laws of control for the visual guidance of action , 1988 .
[59] Robert C. Wolpert,et al. A Review of the , 1985 .
[60] J. Gibson. The Ecological Approach to Visual Perception , 1979 .