|
[1]
|
Li, X., Kong, X., Yang, C., Cheng, Z., Lv, J., Guo, H., et al. (2024) Global, Regional, and National Burden of Ischemic Stroke, 1990-2021: An Analysis of Data from the Global Burden of Disease Study 2021. eClinicalMedicine, 75, Article ID: 102758. [Google Scholar] [CrossRef] [PubMed]
|
|
[2]
|
Gagné-Pelletier, L., Poitras, I., Roig, M. and Mercier, C. (2025) Factors Associated with Upper Extremity Use after Stroke: A Scoping Review of Accelerometry Studies. Journal of NeuroEngineering and Rehabilitation, 22, Article No. 33. [Google Scholar] [CrossRef] [PubMed]
|
|
[3]
|
贾杰. “手脑感知-手脑运动”理论在脑卒中后上肢康复中的应用[J]. 康复学报, 2024, 34(4): 311-315, 322.
|
|
[4]
|
Chen, L., Meng, F., Huo, C., Shao, G., Pan, G., Zhang, X., et al. (2025) Effects of Tactile Feedback in Post-Stroke Hand Rehabilitation on Functional Connectivity and Cortical Activation: An fNIRS Study. Biomedical Optics Express, 16, 643-656. [Google Scholar] [CrossRef] [PubMed]
|
|
[5]
|
程洪, 黄瑞, 邱静, 王艺霖, 邹朝彬, 施柯丞. 康复机器人及其临床应用综述[J]. 机器人, 2021, 43(5): 606-619.
|
|
[6]
|
Ren, H., Liu, T. and Wang, J. (2023) Design and Analysis of an Upper Limb Rehabilitation Robot Based on Multimodal Control. Sensors, 23, Article 8801. [Google Scholar] [CrossRef] [PubMed]
|
|
[7]
|
赵沁平, 周彬, 李甲, 等. 虚拟现实技术研究进展[J]. 科技导报, 2016, 34(14): 71-75.
|
|
[8]
|
Gigante, M.A. (1993) Virtual Reality: Definitions, History and Applications. In: Earnshaw, R.A., Gigante, M.A. and Jones, H., Eds., Virtual Reality Systems, Elsevier, 3-14. [Google Scholar] [CrossRef]
|
|
[9]
|
Stadler, S. (2022) Potential Usages of Virtual Reality in Design Research and Practice—A Review. Proceedings of 4th International Conference Business Meets Technology 2022, Ansbach, 7-9 July 2022, 193-207. [Google Scholar] [CrossRef]
|
|
[10]
|
喻安琦, 杨力凝, 陈青, 等. 虚拟现实技术在脑卒中领域的研究与发展[J]. 中国卫生标准管理, 2024, 15(7): 130-135.
|
|
[11]
|
闫旺旺, 孙晨阳, 马宗浩, 等. 融合视听触反馈的任务导向性康复机器人技术展望与临床应用[J]. 中国康复医学杂志, 2025, 40(4): 481-486.
|
|
[12]
|
Shao, X., Zhang, Y., Zhang, D., Men, Y., Wang, Z., Chen, X. and Xie, P. (2024) [Virtual Reality-Brain Computer Interface Hand Function Enhancement Rehabilitation System Incorporating Multi-Sensory Stimulation]. Journal of Biomedical Engineering, 41, 656-663. (In Chinese)
|
|
[13]
|
夏清玲, 姜彬, 刘代洪, 等. 功能磁共振成像与经颅磁刺激结合调控脑功能网络的应用及展望[J]. 磁共振成像, 2022, 13(8): 117-120, 129.
|
|
[14]
|
刘莹, 廖彦剑. 机械扰动在脑卒中康复的研究进展[J]. 生物医学工程学杂志, 2022, 39(6): 1240-1246.
|
|
[15]
|
管蕾, 罗文佩, 韩佳慧. 多感觉整合范式中潜在的跨通道转换效应[J]. 心理科学进展, 2022, 30(5): 1018-1027.
|
|
[16]
|
李经纬, 杨皓宇, 胡理等. 节律性听觉刺激下的神经振荡同步化及其应用[J]. 生物化学与生物物理进展, 2023, 50(6): 1371-1380.
|
|
[17]
|
刘蓓蓓, 丁勤能, 朱武生. 虚拟现实技术在神经系统疾病康复中的应用进展[J]. 中国现代神经疾病杂志, 2018, 18(3): 222-225.
|
|
[18]
|
王壮, 王轶钊, 丘世因, 刘源, 石巍, 巫嘉陵, 明东. 脑卒中上肢康复机器人研究进展[J]. 中国现代神经疾病杂志, 2023, 23(1): 15-21.
|
|
[19]
|
Carballo, M., Barrero, M. and Villazón, A. (2016) FiMAN: Sistema Computarizado Para Análisis de Movimientos Digitales. Investigacion & Desarrollo, 16, 86-101. [Google Scholar] [CrossRef]
|
|
[20]
|
李亚杰, 邢政, 褚晓蕾, 等. 重复经颅磁刺激在脑卒中后下肢康复中的应用[J]. 医学新知, 2024, 34(11): 1293-1301.
|
|
[21]
|
黄沿江, 汪子钦, 张宪民, 等. 人与机器人共存中的位姿估计与碰撞检测[J]. 机器人, 2022, 44(3): 281-290.
|
|
[22]
|
Zheng, Y., Zhang, H., Zheng, G., Hong, Y., Wei, Z. and Sun, P. (2025) Research on Motion Transfer Method from Human Arm to Bionic Robot Arm Based on PSO-RF Algorithm. Biomimetics, 10, Article 392. [Google Scholar] [CrossRef] [PubMed]
|
|
[23]
|
张柏荣, 刘涛, 张明涛, 等. 光学运动捕捉技术在肩关节生物力学中的研究进展[J]. 中国骨伤, 2023, 36(6): 591-596.
|
|
[24]
|
Zhu, G.C., Böttger, K., Slater, H., Cook, C., Farrell, S.F., Hailey, L., et al. (2019) Concurrent Validity of a Low‐Cost and Time‐Efficient Clinical Sensory Test Battery to Evaluate Somatosensory Dysfunction. European Journal of Pain, 23, 1826-1838. [Google Scholar] [CrossRef] [PubMed]
|
|
[25]
|
Hoh, J.E. and Semrau, J.A. (2025) The Role of Sensory Impairments on Recovery and Rehabilitation after Stroke. Current Neurology and Neuroscience Reports, 25, Article No. 22. [Google Scholar] [CrossRef] [PubMed]
|
|
[26]
|
邹鸿雁, 白定群, 杨力凝, 等. 虚拟现实技术在卒中后上肢康复中的应用现状及可能机制[J]. 中国康复, 2024, 39(2): 111-115.
|
|
[27]
|
Reynolds, R.F., Smith, C.P. and Assländer, L. (2025) Effects of Altered Haptic Feedback Gain Upon Balance Are Explained by Sensory Conflict Estimation. European Journal of Neuroscience, 61, e16670. [Google Scholar] [CrossRef] [PubMed]
|
|
[28]
|
黄振明, 邓海茵, 何友泽, 等. 上肢康复机器人在脑卒中后不同时期上肢运动功能康复中的应用研究进展[J]. 中华物理医学与康复杂志, 2024, 46(8): 751-755.
|
|
[29]
|
Lu, D., Liu, T., Meng, X., Luo, B., Yuan, J., Liu, Y., et al. (2023) Wearable Triboelectric Visual Sensors for Tactile Perception. Advanced Materials, 35, Article ID: 2209117. [Google Scholar] [CrossRef] [PubMed]
|
|
[30]
|
Anglin, J.M., Sugiyama, T. and Liew, S.L. (2017) Visuomotor Adaptation in Head-Mounted Virtual Reality versus Conventional Training. Scientific Reports, 7, Article No. 45469. [Google Scholar] [CrossRef] [PubMed]
|
|
[31]
|
彭宇行, 张拥军, 李思昆. 分布式虚拟环境的时空一致性研究[J]. 电子学报, 2005(2): 313-316.
|
|
[32]
|
崔玉荣, 景蓉, 杨莉, 等. 镜像疗法在脑卒中后功能障碍治疗中的研究进展[J]. 临床医学进展, 2024, 14(1): 15-19.
|
|
[33]
|
Zhang, K., Ding, L., Wang, X., Zhuang, J., Tong, S., Jia, J., et al. (2024) Evidence of Mirror Therapy for Recruitment of Ipsilateral Motor Pathways in Stroke Recovery: A Resting fMRI Study. Neurotherapeutics, 21, e00320. [Google Scholar] [CrossRef] [PubMed]
|
|
[34]
|
张舒扬, 杜心愉, 赵冬临, 等. 虚拟现实技术在周围神经损伤功能恢复中的应用[J]. 中国组织工程研究, 2025, 29(21): 4593-4601.
|
|
[35]
|
边文杰. 虚拟现实技术在脑卒中康复领域的研究进展[J]. 中西医结合护理, 2024, 10(10): 156-162.
|
|
[36]
|
肖长林, 胡楠, 潘翠环, 等. 重复经颅磁刺激对脑卒中患者上肢运动功能恢复的研究进展[J]. 中国康复医学杂志, 2017, 32(12): 1433-1437.
|
|
[37]
|
Zheng, C., Liao, W. and Xia, W. (2015) Effect of Combined Low-Frequency Repetitive Transcranial Magnetic Stimulation and Virtual Reality Training on Upper Limb Function in Subacute Stroke: A Double-Blind Randomized Controlled Trail. Journal of Huazhong University of Science and Technology [Medical Sciences], 35, 248-254. [Google Scholar] [CrossRef] [PubMed]
|
|
[38]
|
Yao, X., Cui, L., Wang, J., Feng, W., Bao, Y. and Xie, Q. (2020) Effects of Transcranial Direct Current Stimulation with Virtual Reality on Upper Limb Function in Patients with Ischemic Stroke: A Randomized Controlled Trial. Journal of NeuroEngineering and Rehabilitation, 17, Article No. 73. [Google Scholar] [CrossRef] [PubMed]
|
|
[39]
|
Hao, J., Xie, H., Harp, K., Chen, Z. and Siu, K. (2022) Effects of Virtual Reality Intervention on Neural Plasticity in Stroke Rehabilitation: A Systematic Review. Archives of Physical Medicine and Rehabilitation, 103, 523-541. [Google Scholar] [CrossRef] [PubMed]
|
|
[40]
|
Cho, S., Kim, W., Paik, N. and Bang, H. (2016) Upper-Limb Function Assessment Using VBBTs for Stroke Patients. IEEE Computer Graphics and Applications, 36, 70-78. [Google Scholar] [CrossRef] [PubMed]
|
|
[41]
|
Winstein, C.J., Stein, J., Arena, R., Bates, B., Cherney, L.R., Cramer, S.C., et al. (2016) Guidelines for Adult Stroke Rehabilitation and Recovery: A Guideline for Healthcare Professionals from the American Heart Association/American Stroke Association. Stroke, 47, e98-e169. [Google Scholar] [CrossRef] [PubMed]
|
|
[42]
|
于有, 许芝林. 胰岛素样生长因子-1对中枢神经系统调控作用的研究进展[J]. 中华围产医学杂志, 2013, 16(11): 701-704.
|
|
[43]
|
Alashram, A.R., Padua, E. and Annino, G. (2022) Virtual Reality for Balance and Mobility Rehabilitation Following Traumatic Brain Injury: A Systematic Review of Randomized Controlled Trials. Journal of Clinical Neuroscience, 105, 115-121. [Google Scholar] [CrossRef] [PubMed]
|
|
[44]
|
Teasell, R., Cotoi, A., Chow, J., et al. (2016) Evidence-Based Review of Stroke Rehabilitation (18th Edition). Collaboration of Rehabilitation Research Institute, Parkwood Institute Research, Lawson Health Research Institute, St. Joseph’s Health Care.
|
|
[45]
|
王梦婷, 殷稚飞, 张瑞媞, 等. 虚拟现实技术在脑卒中后平衡功能康复中的作用机制和应用进展[J]. 中华物理医学与康复杂志, 2024, 46(12): 1127-1130.
|
|
[46]
|
Soleimani, M., Ghazisaeedi, M. and Heydari, S. (2024) The Efficacy of Virtual Reality for Upper Limb Rehabilitation in Stroke Patients: A Systematic Review and Meta-Analysis. BMC Medical Informatics and Decision Making, 24, Article No. 135. [Google Scholar] [CrossRef] [PubMed]
|
|
[47]
|
Patel, J., Qiu, Q., Fluet, G.G., Gorin, H., Gutterman, J., Karunakaran, K., et al. (2025) A Randomized Controlled Trial of Timing and Dosage of Upper Extremity Rehabilitation in Virtual Environments in Persons with Subacute Stroke. Scientific Reports, 15, Article No. 13834. [Google Scholar] [CrossRef] [PubMed]
|
|
[48]
|
Teasell, R., Cotoi, A., Chow, J., et al. (2018) The Stroke Rehabilitation Evidence-Based Review: 18th Edition. Canadian Stroke Network. https://www.ebrsr.com
|
|
[49]
|
刘晓玉, 张超, 谢文广, 等. 脑卒中患者参与虚拟现实技术康复训练体验的Meta整合[J]. 中国护理管理, 2024, 24(9): 1399-1405.
|
|
[50]
|
昌思琴, 黄辰, 戴元富, 蒋长好. VR训练对轻度认知障碍老年人认知功能的影响及神经机制[J]. 心理科学进展, 2025, 33(2): 322-335.
|
|
[51]
|
冯洋, 武昊. “人工智能 + 智慧医疗”背景下脑机接口技术对脑卒中康复的应用研究[J]. 中国新通信, 2024, 26(12): 110-112.
|
|
[52]
|
聂瑶, 张家瑜. 虚拟现实技术对亚急性脑卒中患者上肢功能及活动能力影响的Meta分析[J]. 临床医学进展, 2024, 14(11): 1044-1055.
|
|
[53]
|
蔡丹娴, 曾庆, 何龙龙, 等. 虚拟现实技术在卒中后偏瘫上肢康复中的应用及机制研究[J]. 中国组织工程研究, 2020, 24(32): 5228-5235.
|
|
[54]
|
Donati, D., Pinotti, E., Mantovani, M., Casarotti, S., Fini, A., Tedeschi, R., et al. (2025) The Role of Immersive Virtual Reality in Upper Limb Rehabilitation for Subacute Stroke: A Review. Journal of Clinical Medicine, 14, Article 1903. [Google Scholar] [CrossRef] [PubMed]
|
|
[55]
|
Fu, W. and Ji, C. (2023) Application and Effect of Virtual Reality Technology in Motor Skill Intervention for Individuals with Developmental Disabilities: A Systematic Review. International Journal of Environmental Research and Public Health, 20, Article 4619. [Google Scholar] [CrossRef] [PubMed]
|
|
[56]
|
梁明, 魏珍, 谢荣, 等. 虚拟现实技术改善脑卒中患者平衡与步行功能的系统评价[J]. 中华物理医学与康复杂志, 2020, 42(7): 632-639.
|
|
[57]
|
李辉, 劳方金, 顾旭东, 等. 基于虚拟现实的肩前屈特定角度训练对脑卒中偏瘫患者上肢功能恢复的影响[J]. 中华物理医学与康复杂志, 2023, 45(2): 134-136.
|
|
[58]
|
Ase, H., Honaga, K., Tani, M., Takakura, T., Wada, F., Murakami, Y., et al. (2025) Effects of Home-Based Virtual Reality Upper Extremity Rehabilitation in Persons with Chronic Stroke: A Randomized Controlled Trial. Journal of NeuroEngineering and Rehabilitation, 22, Article No. 20. [Google Scholar] [CrossRef] [PubMed]
|
|
[59]
|
Saleh, S., Bagce, H., Qiu, Q., Fluet, G., Merians, A., Adamovich, S., et al. (2011) Mechanisms of Neural Reorganization in Chronic Stroke Subjects after Virtual Reality Training. 2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society, Boston, 30 August-3 September 2011, 8118-8121. [Google Scholar] [CrossRef] [PubMed]
|
|
[60]
|
姜财, 黄墩兵, 郭进华, 等. 互动式头针结合沉浸式虚拟现实康复系统对脑卒中偏瘫患者上肢功能的影响[J]. 按摩与康复医学, 2022, 13(9): 1-4.
|
|
[61]
|
Aderinto, N., Olatunji, G., Abdulbasit, M.O., Edun, M., Aboderin, G. and Egbunu, E. (2023) Exploring the Efficacy of Virtual Reality-Based Rehabilitation in Stroke: A Narrative Review of Current Evidence. Annals of Medicine, 55, Article ID: 2285907. [Google Scholar] [CrossRef] [PubMed]
|
|
[62]
|
许荣梅, 王永胜, 张雁儒. 虚拟现实技术康复训练对老年人肢体运动功能及生活满意度的影响[J]. 中华物理医学与康复杂志, 2021, 43(10): 921-923.
|
|
[63]
|
韩晓晓, 柯将琼, 蒋松鹤, 等. 虚拟现实游戏训练对脑卒中患者偏瘫上肢功能恢复的影响[J]. 中华物理医学与康复杂志, 2016, 38(6): 401-405.
|
|
[64]
|
萧演清, 白洪铭, 郑佳, 等. 虚拟现实技术在神经运动康复中的应用综述[J]. 计算机辅助设计与图形学学报, 2024, 36(9): 1311-1327.
|
|
[65]
|
李鑫. 基于VR技术的ADL康复训练对认知衰弱合并ADL障碍老年人的干预效果研究[D]: [硕士学位论文]. 长春: 吉林大学, 2024.
|
|
[66]
|
相强宇, 王华本. “5G + VR”在医疗、教育、电子竞技行业的发展研究[J]. 科技与创新, 2023(6): 54-56.
|
|
[67]
|
段苏玲, 白江迪, 唐玉峨, 等. 数字经济背景下基于“5G + VR”的高校国际贸易专业教学改革研究[J]. 中国多媒体与网络教学学报(上旬刊), 2024(12): 5-8.
|
|
[68]
|
江山, 杨光, 王一鸣, 等. 虚拟现实治疗技术对创伤性脑损伤患者上肢功能和血清胰岛素样生长因子-1的影响[J]. 中华物理医学与康复杂志, 2019, 41(7): 517-519.
|
|
[69]
|
Saposnik, G. and Levin, M. (2011) Virtual Reality in Stroke Rehabilitation: A Meta-Analysis and Implications for Clinicians. Stroke, 42, 1380-1386. [Google Scholar] [CrossRef] [PubMed]
|