Magaziner J, Mangione KK, Orwig D, Baumgarten M, Magder L, Terrin M, Fortinsky RH, Gruber-Baldini AL, Beamer BA, Tosteson ANA, Kenny AM, Shardell M, Binder EF, Koval K, Resnick B, Miller R, Forman S, McBride R, Craik RL. Effect of a multicomponent home-based physical therapy intervention on ambulation after hip fracture in older adults: the CAP randomized clinical trial. JAMA. 2019;322(10):946–56.
Article
Google Scholar
Peeters CM, Visser E, Van de Ree CL, Gosens T, Den Oudsten BL, De Vries J. Quality of life after hip fracture in the elderly: a systematic literature review. Injury. 2016;47(7):1369–82.
Article
Google Scholar
Foss NB, Kehlet H. Hidden blood loss after surgery for hip fracture. J Bone Joint Surg (Br). 2006;88(8):1053–9.
CAS
Article
Google Scholar
Wang S, Gao X, An Y. Topical versus intravenous tranexamic acid in total knee arthroplasty: a meta-analysis of randomized controlled trials. Int Orthop. 2017;41(4):739–48.
Article
Google Scholar
Zhao H, Xiang M, Xia Y, Shi X, Pei FX, Kang P. Efficacy of oral tranexamic acid on blood loss in primary total hip arthroplasty using a direct anterior approach: a prospective randomized controlled trial. Int Orthop. 2018;42(11):2535–42.
Article
Google Scholar
Tian S, Shen Z, Liu Y, Zhang Y, Peng A. The effect of tranexamic acid on hidden bleeding in older intertrochanteric fracture patients treated with PFNA. Injury. 2018;49(3):S0020138318300263. https://doi.org/10.1016/j.injury.2018.01.026.
Article
Google Scholar
Lei JL, Zhang BF, Cong YX, Zhuang Y, Wei X, Fu Y, Wei W, Wang P, Wen S, Huang H, Wang H. Tranexamic acid reduces hidden blood loss in the treatment of intertrochanteric fractures with PFNA: a single-center randomized controlled trial. J Orthop Surg Res. 2017;12(1):1–6.
Article
Google Scholar
FOSS NB, Kristensen MT, Kehlet H. Anaemia impedes functional mobility after hip fracture surgery. Age Ageing. 2008;37(2):173–8.
Article
Google Scholar
Lei Y, Xie J, Xu B, Xie X, Huang Q, Pei F. The efficacy and safety of multiple-dose intravenous tranexamic acid on blood loss following total knee arthroplasty: a randomized controlled trial. Int Orthop. 2017;41(10):2053–9.
Article
Google Scholar
Nadler SB, Hidalgo JU, Bloch T. Prediction of blood volume in normal human adults. Surgery. 1962;57:224–32.
Google Scholar
Huang Z, Xie X, Li L, Huang Q, Ma J, Shen B, Kraus VB, Pei F. Intravenous and topical tranexamic acid alone are superior to tourniquet use for primary total knee arthroplasty: a prospective, randomized controlled trial. J Bone Joint Surg Am. 2017;99(24):2053–61.
Article
Google Scholar
Berry SD, Rothbaum RR, Kiel DP, Lee Y, Mitchell SL. Association of clinical outcomes with surgical repair of hip fracture vs nonsurgical management in nursing home residents with advanced dementia. JAMA Intern Med. 2018;178(6):774–80.
Article
Google Scholar
Swain DG, Nightingale PG, Patel JV. Blood transfusion requirements in femoral neck fracture. Injury. 2000;31(1):7–10.
CAS
Article
Google Scholar
Shakur H, Roberts I, Bautista R, Caballero J, Coats T, Dewan Y. Effects of tranexamic acid on death, vascular occlusive events, and blood transfusion in trauma patients with significant haemorrhage (CRASH-2): a randomised, placebo-controlled trial. Lancet. 2010;376(9734):23–32.
CAS
Article
Google Scholar
Roberts I, Shakur H, Afolabi A, Brohi K, Coats T, Dewan Y, Gando S, Guyatt G, Hunt BJ, Morales C, Perel P, Prieto-Merino D, Woolley T. The importance of early treatment with tranexamic acid in bleeding trauma patients: an exploratory analysis of the CRASH-2 randomised controlled trial. Lancet. 2011;377(9771):1096–101.
CAS
Article
Google Scholar
Jiang W, Shang L. Tranexamic acid can reduce blood loss in patients undergoing intertrochanteric fracture surgery: a meta-analysis. Medicine (Baltimore). 2019;98(11):e14564.
CAS
Article
Google Scholar
Cao G, Huang Q, Huang Z, Zhang S, Luo Z, Lei Y, Zhou Z, Pei F. The efficacy and safety of multiple-dose oral tranexamic acid on blood loss following total hip arthroplasty: a randomized controlled trial. Int Orthop. 2019;43(2):299–305.
Article
Google Scholar
Cram P, Yan L, Bohm E, Kuzyk P, Lix LM, Morin SN, Majumdar SR, Leslie WD. Trends in operative and nonoperative hip fracture management 1990–2014: a longitudinal analysis of manitoba administrative data. J Am Geriatr Soc. 2017;65(1):27–34.
Article
Google Scholar
Manach Y, Collins G, Bhandari M, Bessissow A, Boddaert J, Khiami F, Chaudhry H, De Beer J, Riou B, Landsis P, Winemaker M, Boudemaghe T, Devereaux PJ. Outcomes after hip fracture surgery compared with elective total hip replacement. JAMA. 2015;314(11):1159–66.
Article
Google Scholar
LeBlanc ES, Hillier TA, Pedula KL, Rizzo JH, Cawthon PM, Fink HA, Cauley JA, Bauer DC, Black DM. Hip fracture and increased short-term but not long-term mortality in healthy older women. Arch Intern Med. 2011;171(20):1831–7.
Article
Google Scholar
Moran CG, Wenn RT, Sikand M, Taylor AM. Early mortality after hip fracture: is delay before surgery important? J Bone Joint Surg Am. 2005;87-A(3):483–9.
Google Scholar
Orosz GM, Hannan EL, Magaziner J, Koval K, Gilbert M, Aufses A, Straus E, Vespe E, Siu AL. Hip fracture in the older patient: reasons for delay in hospitalization and timing of surgical repair. J Am Geriatr Soc. 2002;50(8):1336–40.
Article
Google Scholar
Li Y, Lin J, Wang P, Yao X, Yu H, Zhuang H, Zhang L, Zeng Y. Effect of time factors on the mortality in brittle hip fracture. J Orthop Surg Res. 2014;9(37):1–5.
Google Scholar
Zeng Y, Si H, Li C, Wu Y, Shen B. Effect of knee flexion position and combined application of tranexamic acid on blood loss following primary total knee arthroplasty: a prospective randomized controlled trial. Int Orthop. 2018;42(3):529–35.
Article
Google Scholar
Xie J, Hu Q, Ma J, Huang Q, Pei F. Multiple boluses of intravenous tranexamic acid to reduce hidden blood loss and the inflammatory response following enhanced-recovery primary total hip arthroplasty: a randomised clinical trial. Bone Joint J. 2017;99-B(11):1442–9.
CAS
Article
Google Scholar
Tengberg P, Foss N, Palm H, Kallemose T, Troelsen A. Tranexamic acid reduces blood loss in patients with extracapsular fractures of the hip. Bone Joint J. 2016;98(12):747–53.
Article
Google Scholar