IJCCR_2025v15n2

International Journal of Clinical Case Reports, 2025, Vol.15, No.2, 59-67 http://medscipublisher.com/index.php/ijccr 66 References Arntz A., Weber F., Handgraaf M., Lällä K., Korniloff K., Murtonen K., Chichaeva J., Kidritsch A., Heller M., Sakellari E., Athanasopoulou C., Lagiou A., Tzonichaki I., Salinas-Bueno I., Martínez-Bueso P., Velasco-Roldán O., Schulz R., and Grüneberg C., 2022, Technologies in home-based digital rehabilitation: scoping review, JMIR Rehabilitation and Assistive Technologies, 10: e43615. https://doi.org/10.2196/43615 Bell K., Onyeukwu C., Smith C., Oh A., Dabbs A., Piva S., Popchak, A., Lynch, A., Irrgang J., and McClincy M., 2020, A portable system for remote rehabilitation following a total knee replacement: a pilot randomized controlled clinical study, Sensors (Basel, Switzerland), 20(21): 6118. https://doi.org/10.3390/s20216118 Constantinescu D., Pavlis W., Rizzo M., Berge D., Barnhill S., and Hernandez V., 2022, The role of commercially available smartphone apps and wearable devices in monitoring patients after total knee arthroplasty: a systematic review, EFORT Open Reviews, 7(7): 481-490. https://doi.org/10.1530/EOR-21-0115 Duan N., and Lin G., 2022, Effect of intelligent medical data technology in postoperative nursing care, BioMed Research International, 2022(1): 9681769. https://doi.org/10.1155/2022/9681769 Fan E.L., Zhang K.K., Wan Y.L., and Hu S.F., 2023, Effects of rapid rehabilitation nursing model on surgical site wound infection and pain of patients with ovarian cancer: a meta-analysis, International Wound Journal, 21(3): e14464. https://doi.org/10.1111/iwj.14464 Fan L., 2022, Usage of narrowband internet of things in smart medicine and construction of robotic rehabilitation system, IEEE Access, 10: 6246-6259. https://doi.org/10.1109/ACCESS.2021.3136347 Gåsvær J.I., Jepsen R., Heldal I., and Sudmann T., 2023, Supporting collaboration in rehabilitation trajectories with information and communication technologies: scoping review, JMIR Rehabilitation and Assistive Technologies, 10(1): e46408. https://doi.org/10.2196/46408 Gharaei N., Ismail W., Grosan C., and Hendradi R., 2021, Optimizing the setting of medical interactive rehabilitation assistant platform to improve the performance of the patients: a case study, Artificial Intelligence in Medicine, 120: 102151. https://doi.org/10.1016/j.artmed.2021.102151 Han X., Zhang M., Jiang S., and Hao C., 2022, Effect of intelligent medical management platform combined with perioperative detailed nursing on cognitive ability, postoperative complications, and quality of life of patients undergoing hysterectomy, Computational and Mathematical Methods in Medicine, 2022(1): 4820835. https://doi.org/10.1155/2022/4820835 He Q.X., Zhao J.H., Fan M.P., and Wang F.F., 2020, Effect of continuous nursing based on wechat platform on postoperative rehabilitation of patients with lumbar disc herniation, Japan Journal of Nursing Science, 18(2): e12382. https://doi.org/10.1111/jjns.12382 Hong C.G., and Wang L.P., 2023, Virtual reality technology in nursing professional skills training: bibliometric analysis, JMIR Serious Games, 11: e44766. https://doi.org/10.2196/44766 Iancu I., Shental R., Zehavi L., and Draznin B., 2023, 537-P: virtual patient simulation assesses the levels of competency and improves performance of advance practice providers in the field of diabetes and cardiometabolic medicine, Diabetes, 72(Supplement_1): 537-P. https://doi.org/10.2337/db23-537-p King R., Taylor B., Talpur A., Jackson C., Manley K., Ashby N., Tod A., Ryan, T., Wood E., Senek M., and Robertson S., 2020, Factors that optimise the impact of continuing professional development in nursing: a rapid evidence review, Nurse Education Today, 98: 104652. https://doi.org/10.1016/j.nedt.2020.104652 LeBaron V., 2022, Challenges and opportunities in designing and deploying remote health monitoring technology for older adults with cancer, Innovation in Aging, 6(6): igac057. https://doi.org/10.1093/geroni/igac057 Lv H., and Yang N., 2021, Clinical effect of application of nursing concept of rehabilitation surgery for improvement of quality of postoperative recovery in orthopedics, Journal of Orthopaedic Surgery and Research, 16: 1-7. https://doi.org/10.1186/s13018-021-02610-3 McDonall J., Redley B., Livingston P., Hutchinson A., Steiger R., and Botti M., 2022, A nurse-led multimedia intervention to increase patient participation in recovery after knee arthroplasty: hybrid type ii implementation study, JMIR Human Factors, 9: e36959.. https://doi.org/10.2196/36959 McKeon J., Alvarez P., Vajapey A., Sarac N., Spitzer A., and Vajapey S., 2021, Expanding role of technology in rehabilitation after lower-extremity joint replacement, JBJS Reviews, 9(9): e21. https://doi.org/10.2106/JBJS.RVW.21.00016 Mennella C., Maniscalco U., Pietro G., and Esposito M., 2023, The role of artificial intelligence in future rehabilitation services: a systematic literature review, IEEE Access, 11: 11024-11043. https://doi.org/10.1109/ACCESS.2023.3236084 Nakayama A., Ishii N., Hori K., Yoshida A., and Isobe M., 2023, Abstract 14168: A randomised open-label controlled trial of a remote cardiac rehabilitation system with wearable medical devices, an interim report of the TELE-REHA trial, Circulation, 148(Suppl_1): A14168. https://doi.org/10.1161/circ.148.suppl_1.14168

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