[1] 布仁达来. 苏荣扎布临床经验集[M]. 北京:科学出版社, 2015:143-144.
[2] 吴敏超, 杨晨, 韩乐, 等. 蒙药古日古木-13的研究进展[J]. 疾病监测与控制, 2019, 13(3):226-228.
[3] 包五月, 斯钦图, 包哈申, 等. 炙法对实验性大鼠的学习记忆功能的作用[J]. 中国蒙医药(蒙), 2010, (6):68-70.
[4] 乌云格日乐. 蒙医灸疗法对老年性痴呆模型大鼠的作用机理研究[D]. 北京:北京中医药大学, 2014.
[5] 宋洋, 赵锋, 黄文豪, 等. 基于“脑肾相关”理论针刺配合康复训练治疗卒中后认知障碍疗效观察[J]. 上海针灸杂志, 2020, 39(6):657-660.
[6] 易艳兰, 李艳, 伍婧, 等. 推拿改善早期老年痴呆认知功能障碍浅析[J]. 中国民族民间医药, 2017, 26(23):18-20.
[7] 徐光镇, 刘继洪, 李可. 耳穴压丸法联合耳穴按摩法治疗轻度认知障碍的临床研究[J]. 现代中西医结合杂志, 2020, 29(6):575-578, 584.
[8] 中国医师协会神经内科医师分会, 认知训练中国指南写作组. 认知训练中国指南(2022年版)[J]. 中华医学杂志, 2022, 102(37):2918-2925.
[9] 刘塔娜. 作业疗法结合认知康复训练治疗对脑卒中后认知障碍患者认知功能、日常生活能力的改善效果[J]. 黑龙江医药, 2025, 38(1):159-162.
[10] Nie PY, Liu F, Lin SH, et al. The effects of computer-assisted cognitive rehabilitation on cognitive impairment after stroke: a systematic review and meta-analysis[J]. J Clin Nurs , 2022, 31(9/10): 1136-1148.
[11] Svaerke KW, Omkvist KV, Havsteen IB, et al. Computer-based cognitive rehabilitation in patients with visuospatial neglect or homonymous hemianopia after stroke[J]. J Stroke Cerebrovasc Dis, 2019, 28(11): 104356.
[12] Xing Y, Bai YL. A review of exercise-induced neuroplasticity in ischemic stroke: pathology and mechanisms[J]. Mol Neurobiol, 2020, 57(10): 4218-4231.
[13] Zheng GH, Zhou WJ, Xia R, et al. Aerobic exercises for cognition rehabilitation following stroke: a systematic review[J]. J Stroke Cerebrovasc Dis, 2016, 25(11): 2780-2789.
[14] Penna LG, Pinheiro JP, Ramalho SHR, et al. Effects of aerobic physical exercise on neuroplasticity after stroke: systematic review[J]. Arq Neuropsiquiatr, 2021, 79(9): 832-843.
[15] Shu YM, He Q, Xie Y, et al. Cognitive gains of aerobic exercise in patients with ischemic cerebrovascular disorder: a systematic review and meta-analysis[J]. Front Cell Dev Biol, 2020, 8: 582380.
[16] Boyne P, Meyrose C, Westover J, et al. Exercise intensity affects acute neurotrophic and neurophysiological responses poststroke[J]. J Appl Physiol, 2019, 126(2): 431-443.
[17] Filmer HL, Dux PE, Mattingley JB. Applications of transcranial direct current stimulation for understanding brain function[J]. Trends Neurosci, 2014, 37(12): 742-753.
[18] Alonzo A, Brassil J, Taylor JL, et al. Daily transcranial direct current stimulation (tDCS) leads to greater increases in cortical excitability than second daily transcranial direct current stimulation[J]. Brain Stimul, 2012, 5(3): 208-213.
[19] Stagg CJ, Nitsche MA. Physiological basis of transcranial direct current stimulation[J]. Neuroscientist, 2011, 17(1): 37-53.
[20] Meinzer M, Antonenko D, Lindenberg R, et al. Electrical brain stimulation improves cognitive performance by modulating functional connectivity and task-specific activation[J]. J Neurosci, 2012, 32(5): 1859-1866.
[21] Dedoncker J, Brunoni AR, Baeken C, et al. A systematic review and meta-analysis of the effects of transcranial direct current stimulation (tDCS) over the dorsolateral prefrontal cortex in healthy and neuropsychiatric samples: influence of stimulation parameters[J]. Brain Stimul, 2016, 9(4): 501-517.
[22] 陈颂玲, 汪洁, 胡荣亮, 等. 经颅直流电刺激治疗脑卒中后认知功能障碍患者的效果[J]. 中国当代医药, 2019, 26(13):91-94.
[23] 曾雅琴, 张利, 梁丰, 等. 经颅直流电刺激左侧背外侧前额叶改善卒中后血管性认知功能障碍的临床观察[J]. 中国康复医学杂志, 2019, 34(4):417-421.
[24] Cotelli M, Calabria M, Manenti R, et al. Brain stimulation improves associative memory in an individual with amnestic mild cognitive impairment[J]. Neurocase, 2012, 18(3): 217-223.
[25] 芦海涛, 孙莉, 郭华珍, 等. 低频重复经颅磁刺激对脑卒中后记忆及认知功能的影响[J]. 中国康复理论与实践, 2015, 21(9):1074-1077.
[26] 尹明宇, 罗婧, 胡昔权, 等. 高频重复经颅磁刺激对脑卒中后认知功能障碍的影响[J]. 中国康复医学杂志, 2018, 33(7):763-769.
[27] 杨强玲, 俞文骏, 张紫馨, 等. 脑卒中后认知障碍的现代康复治疗进展[J]. 按摩与康复医学, 2022, 13(9):72-76.
[28] 徐菁菁, 曹忠耀, 张清华. 重复经颅磁刺激结合认知训练治疗血管性认知障碍的临床疗效观察[J]. 中国当代医药, 2017, 24(28):51-54.
[29] 李思奇, 赵依双, 张玉梅. 人工智能在脑卒中后认知障碍评定与康复中的应用[J]. 中国医刊, 2019, 54(10):1066-1070.
[30] De Luca R, Leonardi S, Spadaro L, et al. Improving cognitive function in patients with stroke: can computerized training be the future[J]. J Stroke Cerebrovasc Dis, 2018, 27(4): 1055-1060.
[31] Yoo C, Yong MH, Chung J, et al. Effect of computerized cognitive rehabilitation program on cognitive function and activities of living in stroke patients[J]. J Phys Ther Sci, 2015, 27(8): 2487-2489.
[32] 叶海程, 杨珊莉, 陈立典, 等. 计算机辅助认知训练对脑卒中患者认知功能及功能独立性的影响[J]. 实用医学杂志, 2014, 30(17):2742-2744.
[33] 曹瀚元, 夏文广, 郑婵娟, 等. 计算机辅助认知训练对脑卒中后不同程度认知障碍康复疗效的影响[J]. 生物医学工程与临床, 2018, 22(6):633-637.
[34] 蔡天燕, 冉春风, 钞强, 等. 计算机辅助工作记忆训练对脑卒中后认知障碍的影响[J]. 中国康复, 2016, 31(5):377-379.
[35] 姜荣荣, 陈艳, 罗丽娟, 等. 一种新型认知障碍诊治系统用于卒中后认知障碍康复治疗的疗效观察[J]. 中国康复医学杂志, 2017, 32(4):414-418.
[36] Dacosta-Aguayo R, Graña M, Savio A, et al. Prognostic value of changes in resting-state functional connectivity patterns in cognitive recovery after stroke: a 3T fMRI pilot study[J]. Hum Brain Mapp, 2014, 35(8): 3819-3831.
[37] Ho TH, Yang FC, Lin RC, et al. Impact of virtual reality-based rehabilitation on functional outcomes in patients with acute stroke: a retrospective case-matched study[J]. J Neurol, 2019, 266(3): 589-597.
[38] 温鸿源, 李力强, 龙洁珍, 等. 3D虚拟现实技术对脑卒中记忆功能障碍患者疗效及~1H-MRS的影响[J]. 中国老年学杂志, 2017, 37(1):100-102.
[39] 侯增广, 赵新刚, 程龙, 等. 康复机器人与智能辅助系统的研究进展[J]. 自动化学报, 2016, 42(12):1765-1779.