| [1] |
Gerstl J V E, Blitz S E, Qu Q R, et al. Global, regional, and national economic consequences of stroke[J]. Stroke, 2023, 54(9): 2380-2389.
|
| [2] |
Pollock A, Gray C, Culham E, et al. Interventions for improving sit-to-stand ability following stroke[J]. Cochrane Database Syst Rev, 2014, 2014(5): CD007232.
|
| [3] |
周哲, 沈夏锋, 沈小花, 等. 椅面前倾对脑卒中偏瘫患者坐-站转移的影响[J]. 中国康复理论与实践, 2020, 26(7): 825-829.
|
|
Zhou Z, Shen X F, Shen X H, et al. Effect of chair inclination forward on sit-to-stand for hemiplegics after stroke[J]. Chin J Rehabil Theory Pract, 2020, 26(7): 825-829.
|
| [4] |
Zhao Y N, Han P P, Zhang X Y, et al. Applications of functional near-infrared spectroscopy (fNIRS) neuroimaging during rehabilitation following stroke: a review[J]. Med Sci Monit, 2024, 30: e943785.
|
| [5] |
中华医学会神经病学分会. 中国各类主要脑血管病诊断要点2019[J]. 中华神经科杂志, 2019, 52(9): 710-715.
|
|
Chinese Society of Neurology, Chinese Stroke Society. Diagnostic criteria of cerebrovascular diseases in China (version 2019)[J]. Chin J Neurol, 2019, 52(9): 710-715.
|
| [6] |
Ng J C M, Ho M W K. Does self-initiated sit-to-stand training with an assistive device regain the independence of sit-to-stand in stroke patient? A single-blinded randomized controlled trial [J]. J Rehabil Assist Technol Eng, 2020, 7: 2055668319866053.
|
| [7] |
刘立明, 瓮长水, 王娜, 等. 5次坐立试验对老年人运动功能的评估价值[J]. 中国康复理论与实践, 2010, 16(4): 359-361.
|
|
Liu L M, Weng C S, Wang N, et al. Five-times sit-to-stand test on physical performance for older people[J]. Chin J Rehabil Theory Pract, 2010, 16(4): 359-361.
|
| [8] |
瓮长水, 王军, 王刚, 等. Berg平衡量表在脑卒中患者中的内在信度和同时效度[J]. 中国康复医学杂志, 2007, 22(8): 688-690, 717.
|
|
Weng C S, Wang J, Wang G, et al. Assessments of internal reliability and concurrent validity of Berg Balance Scale in stroke patients[J]. Chin J Rehabil Med, 2007, 22(8): 688-690, 717.
|
| [9] |
陆佳敏, 闫思念, 陈逸浩, 等. 脑卒中后认知障碍患者静息态脑网络特征的功能性近红外光谱研究[J]. 中国康复理论与实践, 2022, 28(4): 447-452.
|
|
Lu J M, Yan S N, Chen Y H, et al. Characteristics of resting brain network for patients with cognitive impairment after stroke using functional near-infrared spectroscopy[J]. Chin J Rehabil Theory Pract, 2022, 28(4): 447-452.
|
| [10] |
姜林鸿, 刘晓丹, 孙萍萍, 等. 运动想象训练对卒中后患者上肢运动功能恢复的影响及静息态fNIRS脑网络特征研究[J]. 中国康复医学杂志, 2023, 38(11): 1505-1513.
|
|
Jiang L H, Liu X D, Sun P P, et al. Effects of motor imagery training on the recovery of upper extremity motor function in poststroke patients and characteristics of resting-state fNIRS brain network[J]. Chin J Rehabil Med, 2023, 38(11): 1505-1513.
|
| [11] |
Logan A, Freeman J, Kent B, et al. Standing Practice In Rehabilitation Early after stroke (SPIRES): a functional standing frame programme (prolonged standing and repeated sit to stand) to improve function and quality of life and reduce neuromuscular impairment in people with severe sub-acute stroke: a protocol for a feasibility randomised controlled trial[J]. Pilot Feasibility Stud, 2018, 4: 66.
doi: 10.1186/s40814-018-0254-z
|
| [12] |
McDonald C, Mayor J J V, Lennon O. Neurophysiological insights into sit-to-stand post stroke[J]. Front Neurosci, 2025, 19: 1646498.
doi: 10.3389/fnins.2025.1646498
|
| [13] |
黄旭, 孟庆华, 鲍春雨, 等. 中风偏瘫患者坐-站转移过程中的生物力学分析[J]. 医用生物力学, 2021, 36(3): 479-484.
|
|
Huang X, Meng Q H, Bao C Y, et al. Biomechanical analysis of stroke hemiplegic patients during sit-to-stand transfer[J]. J Med Biomech, 2021, 36(3): 479-484.
|
| [14] |
De Sousa D G, Harvey L A, Dorsch S, et al. Two weeks of intensive sit-to-stand training in addition to usual care improves sit-to-stand ability in people who are unable to stand up independently after stroke: a randomised trial[J]. J Physiother, 2019, 65(3): 152-158.
|
| [15] |
Amala S, Chippala P. Effect of sit-to-stand training on balance, muscle strength, and activities of daily living in patients with stroke: a randomised controlled trial[J]. J Clin Diagn Res, 2024, 18(2): 5-8.
|
| [16] |
Josop N A, Mohd Nordin N A, Ahmad M A. Evaluating the effectiveness of different prescriptions of sit-to-stand training in post-stroke rehabilitation: a systematic review and meta-analysis[J]. Medicine, 2025, 104(45): e45625.
doi: 10.1097/MD.0000000000045625
|
| [17] |
Harington T, Comley-White N, Roos R. Energy expenditure and effort of patients with stroke during sit to stand: a pilot study[J]. S Afr J Physiother, 2024, 80(1): 1-6.
|
| [18] |
吴雪娇, 郑洁皎, 夏汶, 等. 脑卒中偏瘫患者坐-站转移生物力学分析研究进展[J]. 中国康复理论与实践, 2018, 24(3): 290-295.
|
|
Wu X J, Zheng J J, Xia W, et al. Advance in biomechanical analysis of sit-to-stand movement in hemiplegic stroke patients (review)[J]. Chin J Rehabil Theory Pract, 2018, 24(3): 290-295.
|
| [19] |
刘孟, 倪朝民, 陈进, 等. 早期坐-站转移训练对亚急性脑卒中偏瘫患者平衡功能的影响[J]. 中国康复, 2015, 30(5): 335-338.
|
|
Liu M, Ni C M, Chen J, et al. Balance outcomes after early sit-to-stand training in subacute stroke patients[J]. Chin J Rehabil, 2015, 30(5): 335-338.
|
| [20] |
江帆, 朱其凤, 付水生. 强化坐-站训练对脑卒中患者平衡、步行及日常生活活动能力的影响[J]. 广西医科大学学报, 2017, 34(8): 1209-1212.
|
|
Jiang F, Zhu Q F, Fu S S. The effects of intensive sit-to-stand training on activities of daily living in patients with stroke[J]. J Guangxi Med Univ, 2017, 34(8): 1209-1212.
|
| [21] |
Onursal Kılınç Ö, De Ridder R, Kılınç M, et al. Trunk and lower extremity biomechanics during sit-to-stand after stroke: a systematic review[J]. Ann Phys Rehabil Med, 2023, 66(3): 101676.
doi: 10.1016/j.rehab.2022.101676
|
| [22] |
Boukadida A, Piotte F, Dehail P, et al. Determinants of sit-to-stand tasks in individuals with hemiparesis post stroke: a review[J]. Ann Phys Rehabil Med, 2015, 58(3): 167-172.
|
| [23] |
Suriyaamarit D, Boonyong S. Comparison of the effects of chair height and anterior seat inclination on sit-to-stand ability in children with spastic diplegic cerebral palsy[J]. J Biomech, 2020, 113: 110098.
doi: 10.1016/j.jbiomech.2020.110098
|
| [24] |
Hamaoui A, Hassaïne M, Zanone P G. Sitting on a sloping seat does not reduce the strain sustained by the postural chain[J]. PLoS One, 2015, 10(1): e0116353.
doi: 10.1371/journal.pone.0116353
|
| [25] |
Qi Y, Xu Y, Wang H, et al. Network reorganization for neurophysiological and behavioral recovery following stroke[J]. Cent Nerv Syst Agents Med Chem, 2024, 24(2): 117-128.
|
| [26] |
Bhattacharjee S, Kashyap R, Abualait T, et al. The role of primary motor cortex: more than movement execution[J]. J Mot Behav, 2021, 53(2): 258-274.
|
| [27] |
Ariani G, Pruszynski J A, Diedrichsen J. Motor planning brings human primary somatosensory cortex into action-specific preparatory states[J]. eLife, 2022, 11: e69517.
|
| [28] |
Liang J, Huang J, Luo Z, et al. Brain network mechanism on cognitive control task in the elderly with brain aging: a functional near infrared spectroscopy study[J]. Front Hum Neurosci, 2023, 17: 1154798.
doi: 10.3389/fnhum.2023.1154798
|