Chinese Journal of Rehabilitation Theory and Practice ›› 2024, Vol. 30 ›› Issue (12): 1407-1419.doi: 10.3969/j.issn.1006-9771.2024.12.006
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LIU Ye1,2, CHEN Di1,2(), QIN Qing1, JI Xiang3,4, TIAN Yifan1, YE Haiyan1
Received:
2024-11-22
Published:
2024-12-25
Online:
2024-12-30
Contact:
CHEN Di
E-mail:chendi@crrc.com.cn
Supported by:
CLC Number:
LIU Ye, CHEN Di, QIN Qing, JI Xiang, TIAN Yifan, YE Haiyan. Application of virtual reality technology in rehabilitation of stroke: a bibliometric analysis[J]. Chinese Journal of Rehabilitation Theory and Practice, 2024, 30(12): 1407-1419.
Table 4
Top ten English keywords with the most cited frequency"
关键词 | 频次 | 中心性 |
---|---|---|
cognitive rehabilitation | 61 | 0.45 |
balance | 42 | 0.20 |
upper limb | 33 | 0.08 |
chronic stroke | 24 | 0.05 |
hemispatial neglect | 15 | 0.24 |
attention | 15 | 0.10 |
motor recovery | 14 | 0.01 |
functional recovery | 13 | 0.05 |
video games | 13 | 0.07 |
gait | 11 | 0.04 |
Table 5
Chinese cluster integration summary"
序号 | 研究重点 | 关键词 |
---|---|---|
1 | 虚拟现实技术对脑卒中患者步行功能的改善的相关研究 | 下肢康复(0.25)、八段锦运动处方训练(0.25)、虚拟现实技术训练(0.25)、本体感觉(0.25)、步态对称比(0.25) |
2 | 虚拟现实技术对脑卒中患者的认知障碍的相关研究 | 针灸治疗(0.17)、康复训练模式(0.17)、手指康复(0.17)、智能康复(0.17)、脑机接口(0.17) |
3 | 虚拟现实技术在康复训练对脑卒中患者的上肢功能的相关研究 | 康复技术(1.23)、躯干控制(1.23)、姿势障碍(1.23)、PNF (1.23)、3D虚拟现实技术(1.23) |
4 | 经颅直流电刺激的相关研究 | 常规康复训练(0.18)、脑可塑性(0.18)、康复护理方法(0.18)、镜像疗法(0.18)、低频重复经颅磁刺激(0.18) |
Table 6
English cluster integration summary"
序号 | 研究重点 | 关键词 |
---|---|---|
1 | 模拟步行器在脑卒中患者康复训练中的应用研究 | subacute (0.38)、prioritization (0.38)、chronic disease (0.38)、collision avoidance (0.38)、talking (0.38) |
2 | 脑卒中患者空间忽视的治疗研究 | right hemisphere stroke (0.09)、novel treatments (0.09)、assessment (0.09)、kinematic analysis (0.09)、reference values (0.09) |
3 | 虚拟现实技术在脑卒中运动康复中的相关研究 | health (0.23)、geriatric rehabilitation (0.23)、body weight distribution (0.23)、biomedical technology (0.23) |
4 | 虚拟现实技术在康复训练对脑卒中患者的上肢功能的相关研究 | computer-assisted telerehabilitation (0.27); cognitive communication (0.27); ambient assisted living (0.27); mood state (0.27); recommendations (0.27) |
5 | 虚拟现实技术对脑卒中患者的认知功能的相关研究 | aerobic fitness (0.33); multi-user virtual worlds (0.33); clinical feasibility (0.33); speech and language therapy (0.33); single session TDCs (0.33) |
Table 7
Top ten keywords of Chinese literature with the highest bursting intensity"
序号 | 突现强度 | 关键词 | 出现年份 | 突现年份 | 截至年份 |
---|---|---|---|---|---|
1 | 2.10 | 运动功能 | 2013 | 2013 | 2016 |
2 | 2.08 | 认知功能 | 2017 | 2019 | 2020 |
3 | 1.80 | 上肢功能 | 2013 | 2022 | 2024 |
4 | 1.66 | 康复治疗 | 2016 | 2021 | 2022 |
5 | 1.60 | 手功能障碍 | 2017 | 2022 | 2024 |
6 | 1.45 | 下肢康复机器人 | 2018 | 2018 | 2020 |
7 | 1.42 | 人工智能 | 2020 | 2020 | 2021 |
8 | 1.38 | 肢体功能障碍 | 2012 | 2012 | 2016 |
9 | 1.13 | 步态分析 | 2014 | 2014 | 2016 |
10 | 1.13 | 日常生活活动能力 | 2014 | 2014 | 2016 |
Table 8
Top ten keywords of English literature with the highest bursting intensity"
序号 | 突现强度 | 关键词 | 出现年份 | 突现年份 | 截至年份 |
---|---|---|---|---|---|
1 | 4.23 | upper extremity | 2019 | 2019 | 2021 |
2 | 4.10 | cognitive impairment | 2012 | 2022 | 2024 |
3 | 3.83 | environment | 2007 | 2007 | 2016 |
4 | 3.83 | poststroke | 2015 | 2015 | 2020 |
5 | 2.92 | video games | 2015 | 2020 | 2021 |
6 | 2.71 | gait | 2004 | 2022 | 2024 |
7 | 2.63 | visuospatial neglect | 2006 | 2013 | 2018 |
8 | 2.44 | functional recovery | 2009 | 2009 | 2012 |
9 | 2.15 | unilateral spatial neglect | 2006 | 2006 | 2017 |
10 | 2.14 | acquired brain injury | 2012 | 2012 | 2017 |
[1] | 刘勇, 谭同才, 沈一吉, 等. 局部振动联合虚拟现实技术对脑卒中上肢运动功能的疗效观察[J]. 中国康复医学杂志, 2021, 36(8): 1000-1003. |
[2] | DE LUCA R, SCIARRONE F, MANULI A, et al. Can emerging technologies be effective in improving alexithymia due to brain lesion?: Lessons from a case report[J]. Medicine (Baltimore), 2020, 99(38): e22313. |
[3] | 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. |
LIU X Y, ZHANG C, XIE W G, et al. Stroke patients' experience in virtual reality technology rehabilitation training: a meta-synthesis[J]. Chin Nurs Manag, 2024, 24(9): 1399-1405. | |
[4] | HILL N T M, MOWSZOWSKI L, NAISMITH S L, et al. Computerized cognitive training in older adults with mild cognitive impairment or dementia: a systematic review and meta-analysis[J]. Am J Psychiatry, 2017, 174(4): 329-340. |
[5] | DEMECO A, ZOLA L, FRIZZIERO A, et al. Immersive virtual reality in post-stroke rehabilitation: a systematic review[J]. Sensors (Basel), 2023, 23(3): 1712. |
[6] | LI C, WANG T, LEE H, et al. Swallowing training combined with game-based biofeedback in poststroke dysphagia[J]. PM R, 2016, 8(8): 773-779. |
[7] | LAVER K E, LANGE B, GEORGE S, et al. Virtual reality for stroke rehabilitation[J]. Cochrane Database Syst Rev, 2017, 11(11): CD8349. |
[8] | 赵雅宁, 郝正玮, 李建民, 等. 下肢康复训练机器人对缺血性脑卒中偏瘫患者平衡及步行功能的影响[J]. 中国康复医学杂志, 2012, 27(11): 1015-1020. |
ZHAO Y N, HAO Z W, LI J M, et al. The effect of Lokomat lower limb gait training rehabilitation robot on balance function and walking ability in hemiplegic patients after ischemic stroke[J]. Chin J Rehabil Med, 2012, 27(11): 1015-1020. | |
[9] | 梁明, 徐奕鹏, 曲源, 等. 基于3D环境的虚拟现实任务导向训练在脑卒中患者平衡功能康复中的应用[J]. 临床神经病学杂志, 2021, 34(5): 348-351. |
LIANG M, XU Y P, QU Y, et al. Application of virtual reality task oriented training based on 3D environments balance rehabilitation in stroke patients[J]. J Clin Neurol, 2021, 34(5): 348-351. | |
[10] | 刘金明, 王国军, 于利国, 等. 虚拟现实技术联合交替垂直振动训练改善脑卒中恢复期患者平衡功能和步行能力[J]. 神经损伤与功能重建, 2021, 16(7): 419-422. |
[11] | 王静, 于纪魁. 虚拟现实技术结合作业治疗对脑卒中患者肢体功能及步行能力的影响[J]. 中国临床医生杂志, 2017, 45(10): 27-29. |
WANG J, YU J K. Effects of virtual reality (VR) technique combined with occupational therapy on limb function and walking ability of stroke patients[J]. Chin J Clin, 2017, 45(10): 27-29. | |
[12] | 刘言薇, 黄臻, 闵瑜, 等. 虚拟现实技术结合活动平板训练对脑卒中患者步态参数的影响[J]. 中国康复医学杂志, 2017, 32(8): 940-942. |
[13] | CORTES-PEREZ I, NIETO-ESCAMEZ F A, OBRERO-GAITAN E. Immersive virtual reality in stroke patients as a new approach for reducing postural disabilities and falls risk: a case series[J]. Brain Sci, 2020, 10(5): 296. |
[14] | 张勇, 杨百瑜, 张振馨, 等. 卒中后认知障碍的概念、病理生理和受损认知域[J]. 中国老年学杂志, 2016, 36(2): 509-511. |
[15] | 付亏杰, 刘旭东, 范飞, 等. 虚拟现实技术对脑卒中恢复期患者认知功能的影响[J]. 承德医学院学报, 2019, 36(4): 303-305. |
[16] | TEO W, MUTHALIB M, YAMIN S, et al. Corrigendum: does a combination of virtual reality, neuromodulation and neuroimaging provide a comprehensive platform for neurorehabilitation? A narrative review of the literature[J]. Front Hum Neurosci, 2017, 11: 53. |
[17] |
MAGGIO M G, LATELLA D, MARESCA G, et al. Virtual reality and cognitive rehabilitation in people with stroke: an overview[J]. J Neurosci Nurs, 2019, 51(2): 101-105.
doi: 10.1097/JNN.0000000000000423 pmid: 30649091 |
[18] |
YASUDA K, MUROI D, OHIRA M, et al. Validation of an immersive virtual reality system for training near and far space neglect in individuals with stroke: a pilot study[J]. Top Stroke Rehabil, 2017, 24(7): 533-538.
doi: 10.1080/10749357.2017.1351069 pmid: 28701101 |
[19] | GIACHERO A, CALATI M, PIA L, et al. Conversational therapy through semi-immersive virtual reality environments for language recovery and psychological well-being in post stroke aphasia[J]. Behav Neurol, 2020, 2020: 2846046. |
[20] |
SAPOSNIK G, TEASELL R, MAMDANI M, et al. Effectiveness of virtual reality using Wii gaming technology in stroke rehabilitation: a pilot randomized clinical trial and proof of principle[J]. Stroke, 2010, 41(7): 1477-1484.
doi: 10.1161/STROKEAHA.110.584979 pmid: 20508185 |
[21] | 高菡璐, 林娜. 虚拟现实技术在脑卒中后偏瘫康复治疗中对患者认知障碍与日常生活能力的影响[J]. 外科研究与新技术(中英文), 2024, 13(2): 110-114. |
GAO H L, LIN N. Impact of virtual reality technology on cognitive impairment and daily living ability of patients in rehabilitation treatment of hemiplegia after stroke[J]. Surg Res New Tech, 2024, 13(2): 110-114. | |
[22] | 梁明, 窦祖林, 王清辉, 等. 虚拟现实技术对脑卒中偏瘫患者上肢功能康复疗效的meta分析[J]. 中国康复医学杂志, 2013, 28(12): 1146-1150. |
[23] | SHIN J, BOG PARK S, HO JANG S. Effects of game-based virtual reality on health-related quality of life in chronic stroke patients: a randomized, controlled study[J]. Comput Biol Med, 2015, 63: 92-98. |
[24] | CRAMER S C, DODAKIAN L, LE V, et al. Efficacy of home-based telerehabilitation vs in-clinic therapy for adults after stroke: a randomized clinical trial[J]. JAMA Neurol, 2019, 76(9): 1079-1087. |
[25] | VINAS-DIZ S, SOBRIDO-PRIETO M. Virtual reality for therapeutic purposes in stroke: a systematic review[J]. Neurologia, 2016, 31(4): 255-277. |
[26] | 王碧茹, 周甜甜, 廖维靖. 虚拟现实技术在脑卒中患者康复治疗中的应用进展[J]. 中国康复, 2021, 36(12): 765-768. |
[27] |
KIM Y J, KU J, CHO S, et al. Facilitation of corticospinal excitability by virtual reality exercise following anodal transcranial direct current stimulation in healthy volunteers and subacute stroke subjects[J]. J Neuroeng Rehabil, 2014, 11: 124.
doi: 10.1186/1743-0003-11-124 pmid: 25135003 |
[28] | 赵飞, 谭杰文, 鲍晓, 等. 经颅直流电刺激联合虚拟现实技术对脑梗死后上肢运动功能的影响[J]. 海军医学杂志, 2021, 42(4): 466-470. |
ZHAO F, TAN J W, BAO X, et al. Effect of transcranial direct current stimulation plus virtual reality on the recovery of upper limb function in patients with cerebral infarction[J]. J Navy Med, 2021, 42(4): 466-470. | |
[29] | LEE S J, CHUN M H. Combination transcranial direct current stimulation and virtual reality therapy for upper extremity training in patients with subacute stroke[J]. Arch Phys Med Rehabil, 2014, 95(3): 431-438. |
[30] | 徐建光, 单春雷, 敖丽娟, 等. 虚拟现实技术应用于认知功能康复的专家共识[J]. 中国康复医学杂志, 2024, 39(5): 609-617. |
[31] | 王帆, 何雯, 蔡妍卿, 等. PNF技术结合虚拟现实训练对脑卒中后平衡功能的疗效[J]. 按摩与康复医学, 2018, 9(3): 20-22. |
WANG F, HE W, CAI Y Q, et al. PNF combined with virtual reality training on balance function after stroke[J]. Chin Manipul Rehabil Med, 2018, 9(3): 20-22. | |
[32] |
ROHRBACH N, CHICKLIS E, LEVAC D E. What is the impact of user affect on motor learning in virtual environments after stroke? A scoping review[J]. J Neuroeng Rehabil, 2019, 16(1): 79.
doi: 10.1186/s12984-019-0546-4 pmid: 31248439 |
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