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September 10, 2025Journal of Robotic Surgery17 citationsOpen Access

Robotic total hip and knee arthroplasty: economic impact and workflow efficiency

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BJBenjamin JevnikarSKShujaa T KhanAEAhmed K. Emara

Key Points

  • Robotic assistance can lead to significant efficiency gains and improved patient outcomes, especially when supported by experienced surgical teams.
  • Institutions may offset higher costs of robotic platforms with reduced complications and shorter hospital stays, improving discharge metrics.
  • The review synthesizes evidence on capital costs, perioperative expenses, and market competition to assess the economic viability of robotic surgeries.
  • Increased adoption of robotic technology in hospitals will require robust long-term data and standardized outcome metrics to validate cost-effectiveness.

Abstract

Abstract Robotic-assisted total joint arthroplasty (RA-TJA) is projected to account for 70% of all arthroplasties by 2030, yet its economic value and operational efficiency have yet to be thoroughly synthesized. While early literature emphasized technical precision, evolving payment models and implementation costs have shifted focus toward cost-effectiveness and workflow integration. To evaluate the economic and institutional viability of RA-TJA by synthesizing available evidence on capital costs, perioperative expenses, learning curves, throughput, and long-term adoption trends. This review also considers market competition, global uptake, and the need for standardized outcomes reporting. A narrative literature review of published cost analyses, real-world efficiency studies, and policy-relevant frameworks was conducted. Literature addressing per-case cost variability, bundled payments, and implementation strategies was analyzed. Emerging economic models and global diffusion patterns were incorporated to contextualize long-term feasibility. Robotic platforms consistently incur higher upfront and perioperative costs than manual or navigated arthroplasty. However, in both high- and low-volume institutions, these costs may be offset by reduced complications, shorter hospital stays, and improved discharge metrics. Efficiency gains are amplified through procedural clustering and experienced teams. Adoption is accelerating globally, facilitated by leasing models and market competition, yet value remains highly dependent on institutional context. A lack of standardized outcome reporting and platform heterogeneity limits cross-study comparisons. Ongoing, long-term, multicenter randomized trials are expected to address these evidence gaps. Robotic assistance can improve the efficiency and precision of arthroplasty procedures, with the potential for substantial cost-effectiveness when optimized. Institutions adopting this technology can expect improved outcomes by leveraging local surgical volume and infrastructure. Wider integration will be facilitated by robust long-term data, standardized outcome metrics, and continuous innovation that aligns with value-based care models.

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Cite This Study

Jevnikar et al. (2025) studied this question.

synapsesocial.com/papers/68c1955c9b7b07f3a061932dhttps://doi.org/10.1007/s11701-025-02698-3
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Robotic-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 arthroplasty2018 · 434 citations
  2. 2Comorbidity, Racial, and Socioeconomic Disparities in Total Knee and Hip Arthroplasty at High Versus Low‐Volume Centers2022 · 7 citations
  3. 3Global trends and prospects in health economics of robotic surgery: a bibliometric analysis2023 · 49 citations
  4. 4High-volume Arthroplasty Centers Are Associated With Lower Hospital Costs When Performing Primary THA and TKA: A Database Study of 288,909 Medicare Claims for Procedures Performed in 20192022 · 27 citations
  5. 5Leveraging large, real‐world data through machine‐learning to increase efficiency in robotic‐assisted total knee arthroplasty2023 · 19 citations