Cost-Effectiveness of Laparoscopic vs Open Liver Resection: A Propensity Score-Matched Single-Center Analysis of 920 Cases.
retrospective_cohort · Level III
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- Record sourced from PubMed, PMID 39620602.
- Also identified by DOI 10.1097/XCS.0000000000001250.
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Abstract
This study compared the clinical and economic outcomes of laparoscopic (LLR) and open liver resection (OLR) for all hepatectomies, including minor and major hepatectomy. This retrospective study included 920 consecutive elective patients undergoing liver resection from 2017 to 2023. Patient demographics, postoperative surgical outcomes, postoperative length of stay (LOS), and cost were compared between LLR and OLR before and after propensity score matching (PSM). A decision model was developed to assess the cost-effectiveness of LLR vs OLR. After PSM, LLR was associated with significantly fewer postoperative transfusions for all hepatectomies (p < 0.001) and major hepatectomy (p = 0.001). LLR was associated with a shorter postoperative median LOS (p < 0.001), lower 30-day readmission (p = 0.022) and reoperation (p = 0.044) rate, and significantly reduced postoperative pneumonia (p = 0.038), unplanned intubation (p = 0.020), sepsis (p = 0.041), and major complication (p < 0.001) for all hepatectomies. This clinical superiority was complemented by a significant reduction in total cost for all (p < 0.001), minor (p = 0.001), and major (p < 0.001) hepatectomy. Cost-effectiveness analysis revealed that LLR was dominant over OLR, with a negative incremental cost-effectiveness ratio (-$2,120.72) and an increased net monetary benefit ($75,015.92) at the willingness-to-pay threshold of $25,000. The probability of LLR being cost-effective was 99.8% across various willingness-to-pay thresholds. LLR is a safe and cost-effective alternative to OLR. Although LLR has higher initial procedural costs, these are offset by significant reduction in postoperative major complication, LOS, and total cost.
Medical subject headings
- Hepatectomy
- Laparoscopy
- Cost-Benefit Analysis