Hennessey RQL, Yang Y, Meneghetti AT, Panton ONM, Chiu CJ. A cost-conscious establishment of a robotic abdominal wall reconstruction program in a publicly funded healthcare system.
Hernia 2023;
27:1115-1122. [PMID:
37347343 DOI:
10.1007/s10029-023-02823-x]
[Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/15/2023] [Accepted: 06/11/2023] [Indexed: 06/23/2023]
Abstract
PURPOSE
Despite reports of better short-term outcomes, the main criticism for the adoption of the robotic surgery platform for abdominal wall reconstruction (AWR) has been the associated cost, especially in countries with a publicly funded healthcare system such as Canada. We describe our experience in implementation of robotic AWR while ensuring cost-effectiveness.
METHODS
This is a retrospective cohort analysis of all patients with ventral hernias ranging between 5 to 15 cm who underwent either open or robotic AWR between January 2020 to August 2022. We reviewed patient characteristics, operative time, post-operative length of stay (LOS), and average cost of surgery.
RESULTS
45 patients underwent open repair and 28 underwent robotic repair in the study period. There was no difference in major patient characteristics between the two groups. Operative time was shorter for open repairs (233.2 ± 96.6 min vs. 299.3 ± 71.8 min, p < 0.001). LOS was significantly longer for open repairs (5 days (interquartile range = 4-6) vs. 2 days (IQR = 1.75-3), p < 0.001) and there were significantly more patients who underwent robotic repair who left hospital in less than 3 days (13.3 vs. 64.3%, p < 0.001). The average overall hospital-based cost for each open repair was $26,952.18 when the cost for equipment, operative time, inpatient hospital stay, and epidural use are accounted for, compared to $17,447.40 for robotic repair ($9,504.78 saving per case).
CONCLUSION
With proper selection of patients based on size of hernia, we demonstrate cost conscious adaptation of the robotic technology to AWR. Our future studies will continue to explore the benefits and limits of this approach in complex hernia repair.
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