References
- An M, Shaughnessy M. The effects of exercise-based rehabilitation on balance and gait for stroke patients: a systematic review. Journal of Neuroscience Nursing. 2011;43(6):298-307. https://doi.org/10.1097/JNN.0b013e318234ea24
- Billinger SA, Arena R, Bernhardt J, et al. Physical activity and exercise recommendations for stroke survivors. Stroke, 2014;45(8): 2532-2553. https://doi.org/10.1161/STR.0000000000000022
- Bindawas SM, Vennu VS. Stroke rehabilitation: A call to action in Saudi Arabia. Neurosciences, 2016;21(4):297-305. https://doi.org/10.17712/nsj.2016.4.20160075
- Carr J, Shepherd R. Neurological rehabilitation: optimizing motor performance. Churchill Livingstone, 2nd ed. London, UK, 2010.
- Chang MC, Chun MH. Use of robots in rehabilitative treatment. Journal of the Korean Medical Association. 2015;58(2):141-146. https://doi.org/10.5124/jkma.2015.58.2.141
- Coenen P, van Werven G, van Nunen MPM, et al. Robot-assisted walking vs overground walking in stroke patients: an ev aluation of muscle activ ity. Journal of Rehabilitation and Medicine. 2012;44(4):331-337. https://doi.org/10.2340/16501977-0954
- Gittler MM, Davis A. Guidelines for adult stroke rehabilitation and recovery. JAMA Clinical Guidelines Synopsis, 2018;319(8):820-821. https://doi.org/10.1001/jama.2017.22036
- Hakakzadeh A, Shariat A, Honarpishe R, et al. Concurrent impact of bilateral multiple joint functional electrical stimulation and treadmill walking on gait and spasticity in post-stroke survivors: a pilot study. Physiotherapy Theory and Practice, 2019;37(12):1368-1376. https://doi.org/10.1080/09593985.2019.1685035
- Han EY, Im SH, Kim BR, et al. Robot-assisted gait training improves brachial-ankle pulse wave velocity and peak aerobic capacity in subacute stroke patients with totally dependent ambulation. Medicine. 2016;95:41.
- Huang VS, Krakauer JW. Robotic neurorehabilitation: a computational motor learning perspective. Journal of NeuroEngineering and Rehabilitation. 2009;25(6):5.
- Kim J, Kim DY, Chun MH, et al. Effects of robot-(Morning Walk®) assisted gait training for patients after stroke: a randomized controlled trial. Clinical Rehabilitation. 2019;33(3):516-523. https://doi.org/10.1177/0269215518806563
- Kim SY, Yang L, Park IJ, et al. Effects of innovative WALKBOT robotic-assisted locomotor training on balance and gait recovery in hemiparetic stroke: A prospective, randomized, experimenter blinded case control study with a four-week follow-up. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2015;23(4):636-642. https://doi.org/10.1109/TNSRE.2015.2404936
- Kim YH, Chang WH, Shin S, et al. Comparisons of the characteristics, initial treatment, rehabilitation therapy and long-term functional outcomes of first-ever stroke patients over a 10-year period: The KOSCO Study. Health and Disease, 2022;15(7):435-449.
- Iosa M, Morone G, Fusco A, et al. Seven capital devices for the Future of Stroke Rehabilitation. Stroke Research and Treatment. 2012;2012:187965.
- Mirelman A., Bonato P, Deutsch JE. Effects of training with a robot-virtual reality system compared with a robot alone on the gait of individuals after stroke. Stroke 2009;40(1):169-174. https://doi.org/10.1161/STROKEAHA.108.516328
- Molteni F, Guanziroli E, Goffredo M, et al. Gait recovery with an overground powered exoskeleton: A randomized controlled trial on subacute stroke subjects. Brain Science. 2021;14(11):104.
- Morone G, Bragoni M, Iosa M, et al. Who may benefit from robotic-assisted gait training? A randomized clinical trial in patients with subacute stroke. Neurorehabilitation and Neural Repair. 2011;25(7):636-644. https://doi.org/10.1177/1545968311401034
- Morone G. Paolucci S, Cherubini A, et al. Robot-assisted gait training for stroke patients: current state of the art and perspectives of robotics. Neuropsychiatric Disease and Treatment. 2017;13:1303-1311. https://doi.org/10.2147/NDT.S114102
- Nam H, Kim SY, An SH. The relationships among gait asymmetry, the gait velocity and motor function of lower extremity in stroke patients. The Korean Society of Physical Therapy, 2010;5(3):385-394.
- Nedergard H, Arumugam A, Sandlund M, et al. Effect of robotic-assisted gait training on objective biomechanical measures of gait in persons post-stroke: a systematic review and meta-analysis. Journal of NeuroEngineering and Rehabilitation, 2021;18(1):64.
- O'Sullivan SB, Schmitz TJ, Fulk GD. Physical rehabilitation. 7th ed. Philadelphia: F.A. Davis Co. 2019.
- Refshauge K, Ada L, Ellis E. Science-based rehabilitation: theories into practice. Elsevier Health Sciences, Amsterdam, Netherlands. 2005.
- Selves C, Stoquart G, Lejeune T. Gait rehabilitation after stroke: review of the evidence of predictors, clinical outcomes and timing for interventions. Acta Neurologica Belgica, 2020;120(4):783-790. https://doi.org/10.1007/s13760-020-01320-7
- Taki S, Imura T, Iwamoto Y, et al. Effects of exoskeletal lower limb robot training on the activities of daily living in stroke patients: Retrospective pre-post comparison using propensity score matched analysis. Journal of Stroke and Cerebrovascular Disease. 2020;29(10):105176.
- WHO. Learn about stroke. 2022.
- WHO. Toward a Common Language for Functioning, Disability and Health. 2002.