1) Reátiga Aguilar J, Rios X, González Edery E, et al. Epidemiological characterization of tibial plateau fractures. J Orthop Surg Res 2022;17(1):106. doi:10.1186/s13018-022-02988-8.
2) Keating JF. Tibial plateau fractures in the older patient. Bull Hosp Jt Dis 1999;58(1):19-23.
3) Zura RD, Browne JA, Black MD, et al. Current management of high-energy tibial plateau fractures. Current Orthopaedics 2007;21:229-35.
4) 徳永真巳.外側プラトー骨折(関節鏡視下整復内固定).整外Surg Tech 2016;6(3):269-76.
5) 徳永真巳.鏡視下整復法と合併する軟部組織損傷の治療.整外Surg Tech 2021;11(2):187-98.
6) 徳永真巳.脛骨プラトー骨折 “治せるものは治したかとです” 迷いをなくす最小侵襲手術.Bone Joint Nerve 2019;9(3):353-61.
7) Ying J, Yu T, Liu J, et al. Clinical comparison of the “windowing” technique and the “open book” technique in Schatzker type II tibial plateau fracture. Orthop Surg 2022;14(10):2553-62.
8) Jabara JT, Only AJ, Paull TZ, et al. Arthroscopically assisted percutaneous screw fixation of tibial plateau fractures. JBJS Essent Surg Tech 2022;12(2):e21.00026. doi:10.2106/JBJS.ST.21.00026.
9) 徳永真巳,王寺享弘,宏州士郎・他.脛骨プラトー骨折の治療成績—鏡視応用法と関節切開法との比較.膝2001;25:196-200.
10) 徳永真巳,王寺享弘,宏州士郎・他.脛骨プラトー骨折に対する関節鏡を応用した骨接合術の治療成績—関節切開法との比較.関節鏡2003;28(2):261-7.
11) Bennett WF, Browner B. Tibial plateau fractures:a study of associated soft tissue injuries. J Orthop Trauma 1994;8(3):183-8.
12) Tscherne H, Lobenhoffer P. Tibial plateau fractures:management and expected results. Clin Orthop Relat Res 1993;(292):87-100.
13) Gardner MJ, Yacoubian S, Geller D, et al. Prediction of soft-tissue injuries in Schatzker II tibial plateau fractures based on measurements of plain radiographs. J Trauma 2006;60(2):319-23;discussion 324.
14) Schnackers MLAP, van Horn YY, Meys GHH, et al. Evidence-based rehabilitation therapy following surgery for (peri-)articular fractures:a systematic review. J Rehabil Med 2019;51(9):638-45.
15) 徳永真巳.脛骨近位端骨折(鏡視下整復内固定,ACL/PCL剥離骨折).MB Orthop 2013;26(11):113-28.
16) Wang P, Yan X, Fei C, et al. Incidence and risk factors of clinically important venous thromboembolism in tibial plateau fractures. Sci Rep 2022;12(1):20206. doi:10.1038/s41598-022-24717-1.
17) Zhu Y, Chen W, Li J, et al. Incidence and locations of preoperative deep venous thrombosis (DVT) of lower extremity following tibial plateau fractures:a prospective cohort study. J Orthop Surg Res 2021;16(1):113. doi:10.1186/s13018-021-02259-y.
18) Li Y, Guan XH, Wang R, et al. Active ankle movements prevent formation of lower-extremity deep venous thrombosis after orthopedic surgery. Med Sci Monit 2016;22:3169-76.
19) Kunkle BF, Kothandaraman V, Goodloe JB, et al. Orthopaedic application of cryotherapy:a comprehensive review of the history, basic science, methods, and clinical effectiveness. JBJS Rev 2021;9(1):e20.00016. doi:10.2106/JBJS.RVW.20.00016.
20) Algafly AA, George KP. The effect of cryotherapy on nerve conduction velocity, pain threshold and pain tolerance. Br J Sports Med 2007;41(6):365-9.
21) Kuo CC, Lin CC, Lee WJ, et al. Comparing the antiswelling and analgesic effects of three different ice pack therapy durations:a randomized controlled trial on cases with soft tissue injuries. J Nurs Res 2013;21(3):186-94.
22) Sturgill LP, Snyder-Mackler L, Manal TJ, et al. Interrater reliability of a clinical scale to assess knee joint effusion. J Orthop Sports Phys Ther 2009;39(12):845-9.
23) Gahr P, Kopf S, Pauly S. Current concepts review:management of proximal tibial fractures. Front Surg 2023;10:1138274. doi:10.3389/fsurg.2023.1138274.
24) Iliopoulos E, Galanis N. Physiotherapy after tibial plateau fracture fixation:a systematic review of the literature. SAGE Open Med 2020;8:2050312120965316. doi:10.1177/2050312120965316.
25) Alves DPL, Wun PYL, Alves AL, et al. Weight discharge in postoperative of plateau fracture tibialis:systematic review of literature. Rev Bras Ortop (Sao Paulo) 2020;55(4):404-9.
26) Johal P, Williams A, Wragg P, et al. Tibio-femoral movement in the living knee. A study of weight bearing and non-weight bearing knee kinematics using ‘interventional’ MRI. J Biomech 2005;38(2):269-76.
27) Satake Y, Izumi M, Aso K, et al. Association between infrapatellar fat pad ultrasound elasticity and anterior knee pain in patients with knee osteoarthritis. Sci Rep 2023;13(1):20103. doi:10.1038/s41598-023-47459-0.
28) Genin J, Faour M, Ramkumar PN, et al. Infrapatellar fat pad impingement:a systematic review. J Knee Surg 2017;30(7):639-46.
29) Gaston P, Will EM, Keating JF. Recovery of knee function following fracture of the tibial plateau. J Bone Joint Surg Br 2005;87(9):1233-6.
30) Yamauchi K, Yoshiko A, Suzuki S, et al. Muscle atrophy and recovery of individual thigh muscles as measured by magnetic resonance imaging scan during treatment with cast for ankle or foot fracture. J Orthop Surg (Hong Kong) 2017;25(3):2309499017739765. doi:10.1177/2309499017739765.
31) Borzuola R, Laudani L, Labanca L, et al. Superimposing neuromuscular electrical stimulation onto voluntary contractions to improve muscle strength and mass:a systematic review. Eur J Sport Sci 2023;23(8):1547-59.
32) Hermann A, Jung A, Gruen A, et al. A lower leg surrogate study to investigate the effect of quadriceps-hamstrings activation ratio on ACL tensile force. J Sci Med Sport 2022;25(9):770-5.
33) Warschawski Y, Elbaz A, Segal G, et al. Gait characteristics and quality of life perception of patients following tibial plateau fracture. Arch Orthop Trauma Surg 2015;135(11):1541-6.
34) Elsoe R, Larsen P. Asymmetry in gait pattern following bicondylar tibial plateau fractures-a prospective one-year cohort study. Injury 2017;48(7):1657-61.
35) Kugelman DN, Qatu AM, Haglin JM, et al. Participation in recreational athletics after operative fixation of tibial plateau fractures:predictors and functional outcomes of those getting back in the game. Orthop J Sports Med 2017;5(12):2325967117743916. doi:10.1177/2325967117743916.
36) Singleton N, Sahakian V, Muir D. Outcome after tibial plateau fracture:how important is restoration of articular congruity? J Orthop Trauma 2017;31(3):158-63.