[1] |
SHARMA L. Osteoarthritis of the knee[J]. N Engl J Med, 2021, 384(1): 51-59.
|
[2] |
CANOVAS F, DAGNEAUX L. Quality of life after total knee arthroplasty[J]. Orthop Traumatol Surg Res, 2018, 104(1S): S41-S46.
|
[3] |
KAHLENBERG C A, NWACHUKWU B U, MCLAWHORN A S, et al. Patient satisfaction after total knee replacement: a systematic review[J]. HSS J, 2018, 14(2): 192-201.
|
[4] |
DEFRANCE M J, SCUDERI G R. Are 20% of patients actually dissatisfied following total knee arthroplasty? A systematic review of the literature[J]. J Arthroplasty, 2023, 38(3): 594-599.
|
[5] |
FURU M, ITO H, NISHIKAWA T, et al. Quadriceps strength affects patient satisfaction after total knee arthroplasty[J]. J Orthop Sci, 2016, 21(1): 38-43.
doi: 10.1016/j.jos.2015.10.002
pmid: 26755384
|
[6] |
CHRISTENSEN J C, MIZNER R L, BO FOREMAN K, et al. Preoperative quadriceps weakness preferentially predicts postoperative aberrant movement patterns during high-demand mobility following total knee arthroplasty[J]. Knee, 2019, 26(1): 79-87.
doi: S0968-0160(18)30768-3
pmid: 30600199
|
[7] |
MCGINN T L, ETCHESON J I, GWAM C U, et al. Short-term outcomes for total knee arthroplasty patients with active extension lag[J]. Ann Transl Med, 2018, 6(11): 204.
doi: 10.21037/atm.2018.05.38
pmid: 30023367
|
[8] |
ILYAS U, PERVEEN W, AKHTAR M, et al. Extensor lag in patients after total knee arthroplasty with and without pre-operative rehabilitation regime: a short report[J]. J Pak Med Assoc, 2022, 72(8): 1639-1641.
doi: 10.47391/JPMA.4697
pmid: 36280935
|
[9] |
SHORTER E, SANNICANDRO A J, POULET B, et al. Skeletal muscle wasting and its relationship with osteoarthritis: a mini-review of mechanisms and current interventions[J]. Curr Rheumatol Rep, 2019, 21(8): 40.
doi: 10.1007/s11926-019-0839-4
pmid: 31203463
|
[10] |
NG J, BALCELLS-NOLLA P, JAMES P J, et al. Extensor mechanism failure in total knee arthroplasty[J]. EFORT Open Rev, 2021, 6(3): 181-188.
doi: 10.1302/2058-5241.6.200119
pmid: 33841917
|
[11] |
DELALOYE J R, MURAR J, SÁNCHEZ M G, et al. How to rapidly abolish knee extension deficit after injury or surgery: a practice-changing video pearl from the Scientific Anterior Cruciate Ligament Network International (SANTI) study group[J]. Arthrosc Tech, 2018, 7(6): e601-e605.
|
[12] |
王微平, 马迎春. 慢性肾脏病患者居家运动康复促进因素与障碍因素的质性研究[J]. 中国康复理论与实践, 2025, 31(2): 235-241.
doi: 10.3969/j.issn.1006-9771.2025.02.014
|
|
WANG W P, MA Y C. Factors affecting home-based exercise rehabilitation for chronic kidney disease patients: a qualitative analysis[J]. Chin J Rehabil Theory Pract, 2025, 31(2): 235-241.
|
[13] |
仲憬, 杨延砚, 张之良, 等. 膝关节术后伸膝迟滞的研究进展[J]. 中华骨科杂志, 2023, 43(16): 1123-1128.
|
|
ZHONG J, YANG Y Y, ZHANG Z L, et al. Progress in extension lag after knee surgery[J]. Chin J Orthop, 2023, 43(16): 1123-1128.
|
[14] |
DABADGHAV R, POTDAR A, PATIL V, et al. Additional effect of neuromuscular electrical stimulation on knee extension lag, pain and knee range of motion in immediate postsurgical phase (0-2 weeks) in primary total knee arthroplasty patient[J]. Ann Transl Med, 2019, 7(Suppl 7): S253.
|
[15] |
JAFFE W L, DUNDON J M, CAMUS T. Alignment and balance methods in total knee arthroplasty[J]. J Am Acad Orthop Surg, 2018, 26(20): 709-716.
doi: 10.5435/JAAOS-D-16-00428
pmid: 30134305
|
[16] |
PAPAS P V, CONGIUSTA D, CUSHNER F D. Cementless versus cemented fixation in total knee arthroplasty[J]. J Knee Surg, 2019, 32(7): 596-599.
doi: 10.1055/s-0039-1678687
pmid: 30822792
|
[17] |
LIU B, MA Y, ZHOU C, et al. A novel predictive model of hospital stay for total knee arthroplasty patients[J]. Front Surg, 2022, 9: 807467.
|
[18] |
ZHU S, QIAN W, JIANG C, et al. Enhanced recovery after surgery for hip and knee arthroplasty: a systematic review and meta-analysis[J]. Postgrad Med J, 2017, 93(1106): 736-742.
doi: 10.1136/postgradmedj-2017-134991
pmid: 28751437
|
[19] |
GOETZ J, MADERBACHER G, GERG A, et al. Isokinetic knee muscle strength comparison after enhanced recovery after surgery (ERAS) versus conventional setup in total knee arthroplasty (TKA): a single blinded prospective randomized study[J]. J Exp Orthop, 2023, 10(1): 44.
doi: 10.1186/s40634-023-00604-0
pmid: 37060486
|
[20] |
CALATAYUD J, CASAÑA J, EZZATVAR Y, et al. High-intensity preoperative training improves physical and functional recovery in the early post-operative periods after total knee arthroplasty: a randomized controlled trial[J]. Knee Surg Sports Traumatol Arthrosc, 2017, 25(9): 2864-2872.
|
[21] |
MORELLI I, MAFFULLI N, BRAMBILLA L, et al. Quadriceps muscle group function and after total knee arthroplasty-asystematic narrative update[J]. Br Med Bull, 2021, 137(1): 51-69.
|
[22] |
CHEUY V A, DAYTON M R, HOGAN C A, et al. Neuromuscular electrical stimulation preserves muscle strength early after total knee arthroplasty: effects on muscle fiber size[J]. J Orthop Res, 2023, 41(4): 787-792.
|
[23] |
DOS ANJOS T, GABRIEL F, VIEIRA T D, et al. Neuromotor treatment of arthrogenic muscle inhibition after knee injury or surgery[J]. Sports Health, 2024, 16(3): 383-389.
|
[24] |
ZHANG Q, CHEN Y, LI Y, et al. Enhanced recovery after surgery in patients after hip and knee arthroplasty: a systematic review and meta-analysis[J]. Postgrad Med J, 2024, 100(1181): 159-173.
doi: 10.1093/postmj/qgad125
pmid: 38134323
|
[25] |
刘京宇, 杨延砚, 张元鸣飞, 等. 2023年度国家康复医学专业医疗服务与质量安全报告[J]. 中国康复理论与实践, 2025, 31(1): 1-20.
doi: 10.3969/j.issn.1006-9771.2025.01.001
|
|
LIU J Y, YANG Y Y, ZHANG Y M F, et al. 2023 National Report on Rehabilitation Medicine Services, Quality and Safety in Medical Care System[J]. Chin J Rehabil Theory Pract, 2025, 31(1): 1-20.
|
[26] |
张元鸣飞, 杨延砚, 张娜, 等. 2021年度国家康复医学专业医疗服务与质量安全报告[J]. 中国康复理论与实践, 2022, 28(12): 1365-1379.
doi: 10.3969/j.issn.1006-9771.2022.12.001
|
|
ZHANG Y M F, YANG Y Y, ZHANG N, et al. 2021 National Report on Rehabilitation Medicine Services, Quality and Safety in Medical Care System[J]. Chin J Rehabil Theory Pract, 2022, 28(12): 1365-1379.
|