Active Virtual Reality Games Reduce Pain Sensitivity in Young, Healthy Adults
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Eric Evans | Keith E. Naugle | Alex Ovispo | Anthony S. Kaleth | Brent Arnold | Kelly M. Naugle | K. Naugle | Eric Evans | Brent Arnold | Alex Ovispo | K. Naugle
[1] E. Kosek,et al. Segmental and plurisegmental modulation of pressure pain thresholds during static muscle contractions in healthy individuals , 2003, European journal of pain.
[2] Kelly M. Naugle,et al. Active Gaming as a Form of Exercise to Induce Hypoalgesia. , 2017, Games for health journal.
[3] Carl Machover,et al. Virtual reality , 1994, IEEE Computer Graphics and Applications.
[4] Diane Gromala,et al. A Virtual Reality Game for Chronic Pain Management: A Randomized, Controlled Clinical Study , 2016, MMVR.
[5] Azucena García-Palacios,et al. Immersive Virtual Reality for Reducing Experimental Ischemic Pain , 2003, Int. J. Hum. Comput. Interact..
[6] E. Eisenberg,et al. Who can benefit from virtual reality to reduce experimental pain? A crossover study in healthy subjects , 2015, European journal of pain.
[7] Marcin Czub,et al. How Body Movement Influences Virtual Reality Analgesia? , 2014, 2014 International Conference on Interactive Technologies and Games.
[8] L. Arendt-Nielsen,et al. Differential pain response at local and remote muscle sites following aerobic cycling exercise at mild and moderate intensity , 2016, SpringerPlus.
[9] K. Koltyn. Analgesia Following Exercise , 2000, Sports medicine.
[10] Anthony S. Kaleth,et al. Physical Activity Intensity, Perceived Exertion, and Enjoyment During Head-Mounted Display Virtual Reality Games. , 2021, Games for health journal.
[11] Bernard Donne,et al. Only lower limb controlled interactive computer gaming enables an effective increase in energy expenditure , 2011, European Journal of Applied Physiology.
[12] 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.
[13] P S Freedson,et al. Calibration of the Computer Science and Applications, Inc. accelerometer. , 1998, Medicine and science in sports and exercise.
[14] Rajesh P. N. Rao,et al. Cortical activity during motor execution, motor imagery, and imagery-based online feedback , 2010, Proceedings of the National Academy of Sciences.
[15] L. Bisset,et al. Reliability of 2 protocols for assessing pressure pain threshold in healthy young adults. , 2015, Journal of manipulative and physiological therapeutics.
[16] H. Vaegter,et al. Test-Retest Reliabilty of Exercise-Induced Hypoalgesia After Aerobic Exercise , 2018, Pain medicine.
[17] E. Kosek,et al. Exercise-Induced Hypoalgesia in Pain-Free and Chronic Pain Populations: State of the Art and Future Directions. , 2019, The journal of pain : official journal of the American Pain Society.
[18] Jörn Lötsch,et al. Peripheral opioid analgesia in experimental human pain models. , 2003, Brain : a journal of neurology.
[19] Ehud Dayan,et al. Virtual reality immersion method of distraction to control experimental ischemic pain. , 2006, The Israel Medical Association journal : IMAJ.
[20] Kelly M. Naugle,et al. Intensity thresholds for aerobic exercise-induced hypoalgesia. , 2014, Medicine and science in sports and exercise.
[21] Minsoo Kang,et al. Validation of the ActiGraph GT3X and activPAL Accelerometers for the Assessment of Sedentary Behavior , 2015 .
[22] Eivind Aadland,et al. Reliability of the Actigraph GT3X+ Accelerometer in Adults under Free-Living Conditions , 2015, PloS one.
[23] L. Kelly,et al. Validity of actigraphs uniaxial and triaxial accelerometers for assessment of physical activity in adults in laboratory conditions , 2013, BMC medical physics.
[24] M. Meeus,et al. Assessing Endogenous Pain Inhibition: Test-Retest Reliability of Exercise-Induced Hypoalgesia in Local and Remote Body Parts After Aerobic Cycling. , 2019, Pain medicine.
[25] K. Hayashi,et al. Effects of Virtual Reality-Based Exercise Imagery on Pain in Healthy Individuals , 2019, BioMed research international.
[26] Kelly M. Naugle,et al. Active Gaming as Pain Relief Following Induced Muscle Soreness in a College-Aged Population , 2017 .
[27] Jay M Bernhardt,et al. Health-risk correlates of video-game playing among adults. , 2009, American journal of preventive medicine.
[28] L. Connelly,et al. Use of Virtual Reality to Distract From Pain and Anxiety. , 2018, Oncology nursing forum.
[29] Hunter G Hoffman,et al. The Analgesic Effects of Opioids and Immersive Virtual Reality Distraction: Evidence from Subjective and Functional Brain Imaging Assessments , 2007, Anesthesia and analgesia.
[30] L. Straker,et al. Reliability of pressure pain threshold testing in healthy pain free young adults , 2015, Scandinavian journal of pain.
[31] Marcin Czub,et al. Body Movement Reduces Pain Intensity in Virtual Reality–Based Analgesia , 2018, Int. J. Hum. Comput. Interact..
[32] Improving Active Gaming's Energy Expenditure in Healthy Adults Using Structured Playing Instructions for the Nintendo Wii and Xbox Kinect , 2019, Journal of strength and conditioning research.
[33] Kelly M. Naugle,et al. A meta-analytic review of the hypoalgesic effects of exercise. , 2012, The journal of pain : official journal of the American Pain Society.
[34] M. Lotze,et al. Motor imagery , 2006, Journal of Physiology-Paris.
[35] G. Baltaci,et al. Reliability of Pressure Pain Thresholds in Healthy Young Adults , 2014 .
[36] H. Hoffman,et al. Use of virtual reality for adjunctive treatment of adult burn pain during physical therapy: a controlled study. , 2000, The Clinical journal of pain.
[37] Brendan Rooney,et al. Self-reported discomfort when using commercially targeted virtual reality equipment in discomfort distraction , 2017, Virtual Reality.
[38] T. Graven-Nielsen,et al. Similarities between exercise-induced hypoalgesia and conditioned pain modulation in humans , 2014, PAIN®.
[39] A. Pertovaara,et al. Dexamethasone attenuates exercise-induced dental analgesia in man , 1990, Brain Research.
[40] K. Mccaul,et al. Distraction and coping with pain. , 1984, Psychological bulletin.
[41] K. Weiss,et al. Videogame distraction using virtual reality technology for children experiencing cold pressor pain: the role of cognitive processing. , 2010, Journal of pediatric psychology.
[42] K. Crossley,et al. VALIDITY AND RELIABILITY OF THE FITBIT FLEX™ AND ACTIGRAPH GT3X+ AT JOGGING AND RUNNING SPEEDS. , 2018, International journal of sports physical therapy.
[43] Kelly M. Naugle,et al. ACUTE PAIN & PERIOPERATIVE PAIN SECTION Original Research Article Isometric Exercise as a Test of Pain Modulation: Effects of Experimental Pain Test, Psychological Variables, and Sex , 2022 .
[44] Kelly M. Naugle,et al. Reduced Modulation of Pain in Older Adults After Isometric and Aerobic Exercise. , 2016, The journal of pain : official journal of the American Pain Society.
[45] T. Furness,et al. Virtual reality as an adjunctive pain control during burn wound care in adolescent patients , 2000, Pain.
[46] B. Ainsworth,et al. International physical activity questionnaire: 12-country reliability and validity. , 2003, Medicine and science in sports and exercise.
[47] Julius Sim,et al. Interrater Reliability of Algometry in Measuring Pressure Pain Thresholds in Healthy Humans, Using Multiple Raters , 2007, The Clinical journal of pain.
[48] M. Duncan,et al. Energy expenditure and enjoyment of exergaming: a comparison of the Nintendo Wii and the gamercize power stepper in young adults. , 2012 .