[1] 唐宇平. 正确认识腔隙性脑梗塞[J]. 家庭医学, 2015, 9(3): 28-29. [2] 中华医学神经病学分会神经康复学组,中华医学会神经病学分会脑血管病学组,卫生部脑卒中筛查与防治工程委员会办公室. 中国脑卒中康复治疗指南(2011完全版)[J].中国康复理论与实践, 2012, 18(4): 301-318. [3] Lecoffre C, De PC, Gabet A, et al.National trends in patients hospitalized for stroke and stroke mortality in France, 2008 to 2014[J]. Stroke, 2017, 48(11): 2939-2945. [4] 何雯,王凯. 脑卒中后上肢功能康复研究进展[J]. 中国康复理论与实践, 2014, 20(4): 334-339. [5] 张雪松,赵宏杰. 中枢神经损伤的感觉统合爬行方案在中风康复中的应用[J]. 长春中医药大学学报, 2007, 23(6): 59. [6] Chen X, Niu X, Wu D, et al.Investigation of the intra- and inter-limb muscle coordination of hands-and-knees crawling in human adults by means of muscle synergy analysis[J]. Entropy, 2017, 19(5): 229-244. [7] 梁文锐,龙耀斌,张启富. 运动想象结合爬行训练对脑卒中患者偏瘫上肢功能的影响[J]. 广西医科大学学报, 2012, 29(1): 74-75. [8] 易龙,张利芳. 爬行训练对脑卒中患者偏瘫下肢功能的影响[J]. 中国实用医药, 2013, 8(22): 261-262. [9] Takeuchi N, Izumi S.Rehabilitation with poststroke motor recovery: a review with a focus on neural plasticity[J]. Stroke Res Treat, 2013, 2013: 128641. [10] Tidwell JH. Physical coordination Training device: US3976058 [P].1976-08-24. [11] Iams JF, Splane RL, Drusch III JA, et al. Device permitting a user to simulate crawling motions to improve movement of the truncal muscles and spine: US4799475 [P].1989-01-24. [12] Canela H. Exercise device for handicapped children: US5407406 [P].1995-04-18. [13] Liang FK.Crawling exerciser: US5447483 [P]. 1995. [14] Peralo CA.Therapeutic exercise apparatus with multiple selectively interlockable sliding platforms: US9011296 B2 [P]. 2015. [15] Milo S.Exercise device with track and sleds: US0108405 [P]. 2012. [16] Parnell T.Special Upper body exercise device: US0217551 A1 [P]. 2013. [17] Pearce M.Wheeled exercise apparat: US9192802 B2 [P]. 2015. [18] Rao M.Crawling exercise: US0244998 A1 [P]. 2012. [19] Smith AD.Crawling exercise device: US9186551 B1 [P]. 2015. [20] 冯建军. 攀登爬行训练机:CN10213346 5A [P]. 2011. [21] 周利莎,饶明沪.俯卧式爬行健身器:CN101181662 [P]. 2008. [22] 肖阳,徐秀林. 基于爬行运动的脊柱康复训练仪的设计[J]. 生物医学工程研究, 2017, 36(1): 77-82. [23] 成大先. 机械设计手册(第五版) [M]. 北京:化学工业出版社, 2010: 634-639. [24] 赵钟,张来平,赫新. 基于“各向异性”四面体网格聚合的复杂外形混合网格生成方法[J]. 空气动力学学报, 2013, 31(1): 34-39. [25] 彭威. 三维实体六面体网格生成关键技术研究及软件开发[D]. 南京:南京航空航天大学, 2011. |