1. Heydari MorchehKhorti A, Daneshjoo A. Effect of a Virtual Reality-based Exercise Program on Balance and Risk of Falling in Older Women. The Scientific Journal of Rehabilitation Medicine. 2023;12(2):246-57.
2. Arnold A, Kolody S, Comeau A, Miguel Cruz A. What does the literature say about the use of personal voice assistants in older adults? A scoping review. Disability and Rehabilitation: Assistive Technology. 2024;19(1):100-11.
3. Rodríguez-Almagro D, Achalandabaso-Ochoa A, Ibáñez-Vera AJ, Góngora-Rodríguez J, Rodríguez-Huguet M, editors. Effectiveness of virtual reality therapy on balance and gait in the elderly: A systematic review. Healthcare; 2024: MDPI.
4. Verghese J, LeValley A, Hall CB, Katz MJ, Ambrose AF, Lipton RB. Epidemiology of gait disorders in community‐residing older adults. Journal of the American Geriatrics Society. 2006;54(2):255-61.
5. Hauer K, Lamb SE, Jorstad EC, Todd C, Becker C. Systematic review of definitions and methods of measuring falls in randomised controlled fall prevention trials. Age and ageing. 2006;35(1):5-10.
6. Gillespie LD, Robertson MC, Gillespie WJ, Sherrington C, Gates S, Clemson L, et al. Interventions for preventing falls in older people living in the community. Cochrane database of systematic reviews. 2012(9).
7. Li F, Harmer P. Protocol for disseminating an evidence-based fall prevention program in community senior centers: evaluation of translatability and public health impact via a single group pre-post study. Implementation science. 2014;9:1-7.
8. Goodwin VA, Abbott RA, Whear R, Bethel A, Ukoumunne OC, Thompson-Coon J, et al. Multiple component interventions for preventing falls and fall-related injuries among older people: systematic review and meta-analysis. BMC geriatrics. 2014;14:1-8.
9. Vieira ER, Palmer RC, Chaves PH. Prevention of falls in older people living in the community. Bmj. 2016;353.
10. Shubert TE. Evidence-based exercise prescription for balance and falls prevention: a current review of the literature. Journal of geriatric physical therapy. 2011;34(3):100-8.
11. Kobayashi R, Nakadaira H, Ishigami K, Muto K, Anesaki S, Yamamoto M. Effects of physical exercise on fall risk factors in elderly at home in intervention trial. Environmental health and preventive medicine. 2006;11:250-5.
12. Lomas‐Vega R, Obrero‐Gaitán E, Molina‐Ortega FJ, Del‐Pino‐Casado R. Tai Chi for risk of falls. A meta‐analysis. Journal of the American Geriatrics Society. 2017;65(9):2037-43.
13. Shimada H, Uchiyama Y, Kakurai S. Specific effects of balance and gait exercises on physical function among the frail elderly. Clinical rehabilitation. 2003;17(5):472-9.
14. Fitzgerald D, Trakarnratanakul N, Smyth B, Caulfield B. Effects of a wobble board-based therapeutic exergaming system for balance training on dynamic postural stability and intrinsic motivation levels. journal of orthopaedic & sports physical therapy. 2010;40(1):11-9.
15. Day L, Hill KD, Stathakis VZ, Flicker L, Segal L, Cicuttini F, et al. Impact of tai-chi on falls among preclinically disabled older people. A randomized controlled trial. Journal of the American Medical Directors Association. 2015;16(5):420-6.
16. Farsi A, Abdoli B, Baraz P. Effect of balance, strength, and combined training on the balance of the elderly women. Iranian Journal of Ageing. 2015;10(3):54-61.
17. Rydwik E, Frändin K, Akner G. Effects of physical training on physical performance in institutionalised elderly patients (70+) with multiple diagnoses. Age and ageing. 2004;33(1):13-23.
18. Van Diest M, Lamoth CJ, Stegenga J, Verkerke GJ, Postema K. Exergaming for balance training of elderly: state of the art and future developments. Journal of neuroengineering and rehabilitation. 2013;10:1-12.
19. Schultheis MT, Rizzo AA. The application of virtual reality technology in rehabilitation. Rehabilitation psychology. 2001;46(3):296.
20. Warburton DE, Bredin SS, Horita LT, Zbogar D, Scott JM, Esch BT, et al. The health benefits of interactive video game exercise. Applied Physiology, Nutrition, and Metabolism. 2007;32(4):655-63.
21. Hung J-W, Chou C-X, Hsieh Y-W, Wu W-C, Yu M-Y, Chen P-C, et al. Randomized comparison trial of balance training by using exergaming and conventional weight-shift therapy in patients with chronic stroke. Archives of physical medicine and rehabilitation. 2014;95(9):1629-37.
22. Lange BS, Requejo P, Flynn SM, Rizzo AA, Valero-Cuevas F, Baker L, et al. The potential of virtual reality and gaming to assist successful aging with disability. Physical Medicine and Rehabilitation Clinics. 2010;21(2):339-56.
23. Levac DE, Sveistrup H. Motor learning and virtual reality. Virtual reality for physical and motor rehabilitation: Springer; 2014. p. 25-46.
24. Levin MF, Demers M. Motor learning in neurological rehabilitation. Disability and rehabilitation. 2021;43(24):3445-53.
25. Bamidis P, Vivas A, Styliadis C, Frantzidis C, Klados M, Schlee W, et al. A review of physical and cognitive interventions in aging. Neuroscience & Biobehavioral Reviews. 2014;44:206-20.
26. Wang L-T. Effects of semi-immersive virtual reality exercise on the quality of life of community-dwelling older adults: Three-month follow-up of a randomized controlled trial. Digital Health. 2024;10:20552076241237391.
27. Abd El-Kafy EM, Alayat MS, Subahi MS, Badghish MS. C-Mill Virtual Reality/Augmented Reality Treadmill Training for Reducing Risk of Fall in the Elderly: A Randomized Controlled Trial. Games for Health Journal. 2024.
28. Wilson O, Arnold N, Thompson LA. Investigating the Effects of Virtual Reality-Based Training on Balance Ability and Balance Confidence in Older Individuals. Applied Sciences. 2024;14(11):4581.
29. Plisky PJ, Rauh MJ, Kaminski TW, Underwood FB. Star Excursion Balance Test as a predictor of lower extremity injury in high school basketball players. Journal of orthopaedic & sports physical therapy. 2006;36(12):911-9.
30. Azad A, Taghizadeh G, Khaneghini A. Assessments of the reliability of the Iranian version of the Berg Balance Scale in patients with multiple sclerosis. Acta Neurol Taiwan. 2011;20(1):22-8.
31. Padala KP, Padala PR, Lensing SY, Dennis RA, Bopp MM, Parkes CM, et al. Efficacy of wii‐fit on static and dynamic balance in community dwelling older veterans: a randomized controlled pilot trial. Journal of aging research. 2017;2017(1):4653635.
32. Shunmway-Cook A. Motor Control; Theory and Practical application: LippincottWilliams & Wilkins; 2001.
33. Gaedtke A, Morat T. TRX suspension training: A new functional training approach for older adults–development, training control and feasibility. International journal of exercise science. 2015;8(3):224.
34. Arnold N, Wilson O, Thompson L. Virtual Reality Training Affects Center of Pressure (COP)-Based Balance Parameters in Older Individuals. Applied Sciences. 2024;14(16):7182.
35. Babadi SY, Daneshmandi H. Effects of virtual reality versus conventional balance training on balance of the elderly. Experimental gerontology. 2021;153:111498.
36. Fidan O, Kiloatar H, Colak E, Oskay D. Effects of group-based virtual reality training on activities of daily living and functional outcomes in older adults: a randomised control trial. Disability and Rehabilitation: Assistive Technology. 2024:1-12.
37. Lee Y, Choi W, Lee K, Song C, Lee S. Virtual reality training with three-dimensional video games improves postural balance and lower extremity strength in community-dwelling older adults. Journal of aging and physical activity. 2017;25(4):621-7.
38. Rendon AA, Lohman EB, Thorpe D, Johnson EG, Medina E, Bradley B. The effect of virtual reality gaming on dynamic balance in older adults. Age and ageing. 2012;41(4):549-52.
39. Adcock M, Fankhauser M, Post J, Lutz K, Zizlsperger L, Luft AR, et al. Effects of an in-home multicomponent exergame training on physical functions, cognition, and brain volume of older adults: a randomized controlled trial. Frontiers in medicine. 2020;6:321.
40. Schröder J, Van Criekinge T, Embrechts E, Celis X, Van Schuppen J, Truijen S, et al. Combining the benefits of tele-rehabilitation and virtual reality-based balance training: a systematic review on feasibility and effectiveness. Disability and Rehabilitation: Assistive Technology. 2019;14(1):2-11.
41. Prasertsakul T, Kaimuk P, Chinjenpradit W, Limroongreungrat W, Charoensuk W. The effect of virtual reality-based balance training on motor learning and postural control in healthy adults: a randomized preliminary study. Biomedical engineering online. 2018;17:1-17.
42. Rebêlo FL, de Souza Silva LF, Doná F, Barreto AS, Quintans JdSS. Immersive virtual reality is effective in the rehabilitation of older adults with balance disorders: A randomized clinical trial. Experimental Gerontology. 2021;149:111308.
43. Yeşilyaprak SS, Yıldırım MŞ, Tomruk M, Ertekin Ö, Algun ZC. Comparison of the effects of virtual reality-based balance exercises and conventional exercises on balance and fall risk in older adults living in nursing homes in Turkey. Physiotherapy theory and practice. 2016;32(3):191-201.
44. Rogers MW, Mille M-L. Lateral stability and falls in older people. Exercise and sport sciences reviews. 2003;31(4):182-7.
45. Rubenstein LZ, Josephson KR. The epidemiology of falls and syncope. Clinics in geriatric medicine. 2002;18(2):141-58.
46. Park C-H, Elavsky S, Koo K-M. Factors influencing physical activity in older adults. Journal of exercise rehabilitation. 2014;10(1):45.
47. Tahmosybayat R, Baker K, Godfrey A, Caplan N, Barry G. Movements of older adults during exergaming interventions that are associated with the Systems Framework for Postural Control: A systematic review. Maturitas. 2018;111:90-9.
48. Teixeira L, Silva K, Imoto A, Teixeira T, Kayo A, Montenegro-Rodrigues R, et al. Progressive load training for the quadriceps muscle associated with proprioception exercises for the prevention of falls in postmenopausal women with osteoporosis: a randomized controlled trial. Osteoporosis international. 2010;21:589-96.
49. Liu M, Zhou K, Chen Y, Zhou L, Bao D, Zhou J. Is virtual reality training more effective than traditional physical training on balance and functional mobility in healthy older adults? A systematic review and meta-analysis. Frontiers in Human Neuroscience. 2022;16:843481.
50. Corregidor-Sánchez AI, Segura-Fragoso A, Rodríguez-Hernández M, Jiménez-Rojas C, Polonio-López B, Criado-Álvarez JJ. Effectiveness of virtual reality technology on functional mobility of older adults: systematic review and meta-analysis. Age and ageing. 2021;50(2):370-9.
51. Geiger RA, Allen JB, O'Keefe J, Hicks RR. Balance and mobility following stroke: effects of physical therapy interventions with and without biofeedback/forceplate training. Physical therapy. 2001;81(4):995-1005.
52. Cikajlo I, Rudolf M, Goljar N, Burger H, Matjačić Z. Telerehabilitation using virtual reality task can improve balance in patients with stroke. Disability and rehabilitation. 2012;34(1):13-8.
53. Ren Y, Lin C, Zhou Q, Yingyuan Z, Wang G, Lu A. Effectiveness of virtual reality games in improving physical function, balance and reducing falls in balance-impaired older adults: A systematic review and meta-analysis. Archives of gerontology and geriatrics. 2023;108:104924.
54. Lee K. Virtual reality gait training to promote balance and gait among older people: a randomized clinical trial. Geriatrics. 2020;6(1):1.
55. Cano Porras D, Sharon H, Inzelberg R, Ziv-Ner Y, Zeilig G, Plotnik M. Advanced virtual reality-based rehabilitation of balance and gait in clinical practice. Therapeutic advances in chronic disease. 2019;10:2040622319868379.
56. Park E-C, Kim S-G, Lee C-W. The effects of virtual reality game exercise on balance and gait of the elderly. Journal of physical therapy science. 2015;27(4):1157-9.
57. Weber H, Barr C, Gough C, Van den Berg M. How commercially available virtual reality–based interventions are delivered and reported in gait, posture, and balance rehabilitation: a systematic review. Physical therapy. 2020;100(10):1805-15.
58. Berg K. Measuring balance in the elderly: Development and validation of an instrument. 1992.
59. Duncan PW, Weiner DK, Chandler J, Studenski S. Functional reach: a new clinical measure of balance. Journal of gerontology. 1990;45(6):M192-M7.
60. Mathias S, Nayak U, Isaacs B. Balance in elderly patients: the" get-up and go" test. Archives of physical medicine and rehabilitation. 1986;67(6):387-9.
61. Persad C, Cook S, Giordani B. Assessing falls in the elderly: should we use simple screening tests or a comprehensive fall risk evaluation? European Journal of physical and rehabilitation medicine. 2010;46(2):249-59.
62. Jonsson E, Seiger Å, Hirschfeld H. One-leg stance in healthy young and elderly adults: a measure of postural steadiness? Clinical biomechanics. 2004;19(7):688-94.
63. Franks KA, Brown LE, Coburn JW, Kersey RD, Bottaro M. Effects of motorized vs non-motorized treadmill training on hamstring/quadriceps strength ratios. Journal of Sports Science & Medicine. 2012;11(1):71.
64. Smoliga JM, Hegedus EJ, Ford KR. Increased physiologic intensity during walking and running on a non-motorized, curved treadmill. Physical therapy in Sport. 2015;16(3):262-7.
65. Jacquelin Perry M. Gait analysis: normal and pathological function. New Jersey: SLACK. 2010.
66. Bischoff HA, Stähelin HB, Monsch AU, Iversen MD, Weyh A, Von Dechend M, et al. Identifying a cut‐off point for normal mobility: a comparison of the timed ‘up and go’test in community‐dwelling and institutionalised elderly women. Age and ageing. 2003;32(3):315-20.
67. Cromwell R, Newton R, Grisso J, Edwards W. Relationship between select balance measures and a gait stability ratio in individuals who are known fallers. control of posture and gait maastricht, The Netherlands. 2001.
68. Callisaya M, Blizzard L, McGinley JL, Srikanth V. Risk of falls in older people during fast-walking–the TASCOG study. Gait & posture. 2012;36(3):510-5.
69. Hausdorff JM, Rios DA, Edelberg HK. Gait variability and fall risk in community-living older adults: a 1-year prospective study. Archives of physical medicine and rehabilitation. 2001;82(8):1050-6.
70. Mirelman A, Rochester L, Maidan I, Del Din S, Alcock L, Nieuwhof F, et al. Addition of a non-immersive virtual reality component to treadmill training to reduce fall risk in older adults (V-TIME): a randomised controlled trial. The Lancet. 2016;388(10050):1170-82.
71. Thaler-Kall K, Peters A, Thorand B, Grill E, Autenrieth CS, Horsch A, et al. Description of spatio-temporal gait parameters in elderly people and their association with history of falls: results of the population-based cross-sectional KORA-Age study. BMC geriatrics. 2015;15:1-8.
72. Liao Y-Y, Chen I-H, Lin Y-J, Chen Y, Hsu W-C. Effects of virtual reality-based physical and cognitive training on executive function and dual-task gait performance in older adults with mild cognitive impairment: a randomized control trial. Frontiers in aging neuroscience. 2019;11:162.
73. Yang S, Hwang W-H, Tsai Y-C, Liu F-K, Hsieh L-F, Chern J-S. Improving balance skills in patients who had stroke through virtual reality treadmill training. American journal of physical medicine & rehabilitation. 2011;90(12):969-78.
74. Cho KH, Lee WH. Effect of treadmill training based real-world video recording on balance and gait in chronic stroke patients: a randomized controlled trial. Gait & posture. 2014;39(1):523-8.
75. Cromwell RL, Newton RA, Forrest G. Influence of vision on head stabilization strategies in older adults during walking. The Journals of Gerontology Series A: Biological Sciences and Medical Sciences. 2002;57(7):M442-M8.
76. Grau-Pellicer M, Chamarro-Lusar A, Medina-Casanovas J, Serda Ferrer B-C. Walking speed as a predictor of community mobility and quality of life after stroke. Topics in stroke rehabilitation. 2019;26(5):349-58.
77. Mao Y, Chen P, Li L, Huang D. Virtual reality training improves balance function. Neural regeneration research. 2014;9(17):1628-34.