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Original Research

Resource utilization and costs for robotic-assisted and manual total knee arthroplasty – a premier healthcare database study

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Pages 303-311 | Received 08 Feb 2022, Accepted 23 Feb 2023, Published online: 02 Mar 2023

References

  • Losina E, Walensky RP, Kessler CL, et al. Cost-effectiveness of total knee arthroplasty in the United States: patient risk and hospital volume. Arch Intern Med. 2009;169(12):1113–1121.
  • Carr AJ, Robertsson O, Graves S, et al. Knee replacement. Lancet. 2012;379(9823):1331–1340.
  • Bemelmans YFL, Keulen MHF, Heymans M, et al. Safety and efficacy of outpatient Hip and knee arthroplasty: a systematic review with meta-analysis. Arch Orthop Trauma Surg. 2022;142(8):1775–1791.
  • Losina E, Katz JN. Total knee arthroplasty on the rise in younger patients: are we sure that past performance will guarantee future success? Arthritis Rheum. 2012;64(2):339–341.
  • Evans JT, Walker RW, Evans JP, et al. How long does a knee replacement last? A systematic review and meta-analysis of case series and national registry reports with more than 15 years of follow-up. Lancet. 2019;393(10172):655–663.
  • Wang K, Sun H, Zhang K, et al. Better outcomes are associated with cementless fixation in primary total knee arthroplasty in young patients: a systematic review and meta-analysis of randomized controlled trials. Medicine (Baltimore). 2020;99(3):e18750.
  • Parvizi J, Nunley RM, Berend KR, et al. High level of residual symptoms in young patients after total knee arthroplasty. Clin Orthop Relat Res. 2014;472(1):133–137.
  • Bourne RB, Chesworth B, Davis A, et al. Comparing patient outcomes after THA and TKA: is there a difference? Clin Orthop Relat Res. 2010;468(2):542–546.
  • Zaballa E, Ntani G, Harris EC, et al. Return to work and employment retention after uni-compartmental and total knee replacement: findings from the clinical outcomes in arthroplasty study. Knee. 2023;40:245–255.
  • Kayani B, Haddad FS. Robotic total knee arthroplasty: clinical outcomes and directions for future research. Bone Joint Res. 2019;8(10):438–442.
  • Smith AF, Eccles CJ, Bhimani SJ, et al. Improved patient satisfaction following robotic-assisted total knee arthroplasty. J Knee Surg. 2021;34(7):730–738.
  • Jinnah A, Luo T, Plate J, et al. General concepts in robotics in orthopedics. In: Robotics in knee and hip arthroplasty. Springer, Cham. 2019. p. 27–35. DOI:10.1007/978-3-030-16593-2_3.
  • Moreland JR. Mechanisms of failure in total knee arthroplasty. Clin Orthop Relat Res. 1988;226:49–64.
  • Matsuda S, Kawahara S, Okazaki K, et al. Postoperative alignment and ROM affect patient satisfaction after TKA knee. Clin Orthop Relat Res. 2013;471(1):127–133.
  • Khlopas A, Sodhi N, Hozack WJ, et al. Patient-reported functional and satisfaction outcomes after robotic-arm-assisted total knee arthroplasty: early results of a prospective multicenter investigation. J Knee Surg. 2020;33(7):685–690.
  • Mulpur P, Masilamani ABS, Prakash M, et al. Comparison of patient reported outcomes after robotic versus manual total knee arthroplasty in the same patient undergoing staged bilateral knee arthroplasty. J Orthop. 2022;34:111–115.
  • Choi YJ, Ra HJ. Patient satisfaction after total knee arthroplasty. Knee Surg Relat Res. 2016;28(1):1–15.
  • Kayani B, Konan S, Pietrzak JRT, et al. Robotic-arm assisted total knee arthroplasty is associated with improved early functional recovery and reduced time to hospital discharge compared with conventional jig-based total knee arthroplasty. Bone Joint J. 2018;100B(7):930–937.
  • Khlopas A, Sodhi N, Hozack WJ. Patient-reported functional and satisfaction outcomes after robotic-arm-assisted total knee arthroplasty: early results of a prospective multicenter investigation. J Knee Surg. 2019;33(7):685–690.
  • Liow MHL, Goh GSH, Wong MK, et al. Robotic-assisted total knee arthroplasty may lead to improvement in quality-of-life measures: a 2-year follow-up of a prospective randomized trial. Knee Surg Sports Traumatol Arthrosc. 2017;25(9):2942–2951.
  • Liow MHL, Xia Z, Wong MK, et al. Robot-assisted total knee arthroplasty accurately restores the joint line and mechanical axis: a prospective randomised study. J Arthroplasty. 2014;29(12)2373–2377.
  • Marchand RC, Sodhi N, Anis HK, et al. One-year patient outcomes for robotic-arm-assisted versus manual total knee arthroplasty. J Knee Surg. 2019;32(11):1063–1068.
  • Marchand RC, Sodhi N, Khlopas A, et al. Patient satisfaction outcomes after robotic arm-assisted total knee arthroplasty: a short-term evaluation. J Knee Surg. 2017;30(9):849–853.
  • Marchand RC, Sodhi N, Khlopas A, et al. Coronal correction for severe deformity using robotic-assisted total knee arthroplasty. J Knee Surg. 2018;31(1):2–5.
  • Xu JZ, Li LL, Fu J, et al. Comparison of serum inflammatory indicators and radiographic results in MAKO robotic-assisted versus conventional total knee arthroplasty for knee osteoarthritis: a retrospective study of Chinese patients. BMC Musculoskelet Disord. 2022;23(1):418.
  • Xu Z, Li H, Liu Z, et al. Robot-assisted surgery in total knee arthroplasty: trauma maker or trauma savior? A prospective, randomized cohort study. Burns Trauma. 2022;10:tkac034.
  • Ong KL, Coppolecchia A, Chen Z, et al. Robotic-arm assisted total knee arthroplasty: cost savings demonstrated at one year. Clinicoecon Outcomes Res. 2022;14:309–318.
  • Bellemans J, Vandenneucker H, Vanlauwe J. Robot-assisted total knee arthroplasty. Clin Orthop Relat Res. 2007;464:111–116.
  • Sharabiani MT, Aylin P, Bottle A. Systematic review of comorbidity indices for administrative data. Med Care. 2012;50(12):1109–1118.
  • Menendez ME, Neuhaus V, van Dijk CN, et al. The Elixhauser comorbidity method outperforms the Charlson index in predicting inpatient death after orthopaedic surgery. Clin Orthop Relat Res. 2014;472(9):2878–2886.
  • Groll DL, To T, Bombardier C, et al. The development of a comorbidity index with physical function as the outcome. J Clin Epidemiol. 2005;58(6):595–602.
  • Groll DL, Heyland DK, Caeser M, et al. Assessment of long-term physical function in acute respiratory distress syndrome (ARDS) patients: comparison of the Charlson comorbidity index and the functional comorbidity index. Am J Phys Med Rehabil. 2006;85(7):574–581.
  • Ming K, Rosenbaum PR. Substantial gains in bias reduction from matching with a variable number of controls. Biometrics. 2000;56(1):118–124.
  • Rassen JA, Shelat AA, Myers J, et al. One-to-many propensity score matching in cohort studies. Pharmacoepidemiol Drug Saf. 2012;21(Suppl 2):69–80.
  • Berry DJ, Bozic KJ. Current practice patterns in primary hip and knee arthroplasty among members of the American association of hip and knee surgeons. J Arthroplasty. 2010;25(6 Suppl):2–4.
  • Garriga C, Leal J, Sánchez-Santos MT, et al. Geographical variation in outcomes of primary hip and knee replacement. JAMA Network Open. 2019;2(10):e1914325.
  • Mont MA, Cool C, Gregory D, et al. Health care utilization and payer cost analysis of robotic arm assisted total knee arthroplasty at 30, 60, and 90 days. J Knee Surg. 2021;34(3):328–337.
  • Cool CL, Jacofsky DJ, Seeger KA, et al. A 90-day episode-of-care cost analysis of robotic-arm assisted total knee arthroplasty. J Comp Eff Res. 2019;8(5):327–336.
  • Batailler C, Fernandez A, Swan J, et al. MAKO CT-based robotic arm-assisted system is a reliable procedure for total knee arthroplasty: a systematic review. Knee Surg Sports Traumatol Arthrosc. 2020;29:3585–3598.
  • van der List JP, Chawla H, Joskowicz L, et al. Current state of computer navigation and robotics in unicompartmental and total knee arthroplasty: a systematic review with meta-analysis. Knee Surg Sports Traumatol Arthrosc. 2016;24(11):3482–3495.
  • Ren Y, Cao S, Wu J, et al. Efficacy and reliability of active robotic-assisted total knee arthroplasty compared with conventional total knee arthroplasty: a systematic review and meta-analysis. Postgrad Med J. 2019;95(1121):125–133.
  • Bollars P, Boeckxstaens A, Mievis J, et al. Preliminary experience with an image-free handheld robot for total knee arthroplasty: 77 cases compared with a matched control group. Eur J Orthop Surg Traumatol. 2020;30(4):723–729.
  • King C, Edgington J, Perrone M, et al. The effects of robot-assisted total knee arthroplasty on readmission and postoperative pain: are the added costs worth it? Orthop Proc. 2019;101-B(SUPP_5)124–127.
  • Khlopas A, Sodhi N, Sultan AA, et al. Robotic arm-assisted total knee arthroplasty. J Arthroplasty. 2018;33(7):2002–2006.
  • Waddell BS, Carroll K, Jerabek S. Technology in arthroplasty: are we improving value? Curr Rev Musculoskelet Med. 2017;10(3):378–387.
  • Patel AA, Singh K, Nunley RM, et al. Administrative databases in orthopaedic research: pearls and pitfalls of big data. J Am Acad Orthop Surg. 2016;24(3):172–179.
  • Bohl DD, Singh K, Grauer JN. Nationwide databases in orthopaedic surgery research. J Am Acad Orthop Surg. 2016;24(10):673–682.