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    Date Issued2015 (1)2011 (1)AuthorCronenwett, Jack L. (2)
    DeMartino, Randall R. (2)
    Goodney, Philip P. (2)Schanzer, Andres (2)Conte, Michael S. (1)View MoreUMass Chan AffiliationDepartment of Surgery (1)Department of Surgery, Division of Vascular and Endovascular Surgery (1)Document TypeJournal Article (2)KeywordSurgery (2)Cardiovascular Diseases (1)Outcome and Process Assessment (Health Care) (1)Quality Indicators, Health Care (1)Vascular Surgical Procedures (1)View MoreJournalJournal of vascular surgery (1)Journal of vascular surgery : official publication, the Society for Vascular Surgery [and] International Society for Cardiovascular Surgery, North American Chapter (1)

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    Statin therapy after infrainguinal bypass surgery for critical limb ischemia is associated with improved 5-year survival

    Suckow, Bjoern D.; Kraiss, Larry W.; Schanzer, Andres; Stone, David H.; Kalish, Jeffrey A.; DeMartino, Randall R.; Cronenwett, Jack L.; Goodney, Philip P. (2015-01-01)
    OBJECTIVE: Although statin therapy has been linked to fewer short-term complications after infrainguinal bypass, its effect on long-term survival remains unclear. We therefore examined associations between statin use and long-term mortality, graft occlusion, and amputation after infrainguinal bypass. METHODS: We used the Vascular Study Group of New England registry to study 2067 patients (71% male; mean age, 67 +/- 11 years; 67% with critical limb ischemia [CLI]) who underwent infrainguinal bypass from 2003 to 2011. Of these, 1537 (74%) were on statins perioperatively and at 1-year follow-up, and 530 received no statin. We examined crude, adjusted, and propensity-matched rates of 5-year surviva1, 1-year amputation, graft occlusion, and perioperative myocardial infarction. RESULTS: Patients taking statins at the time of surgery and at the 1-year follow-up were more likely to have coronary disease (38% vs 22%; P < .001), diabetes (51% vs 36%; P < .001), hypertension (89% vs 77%; P < .001), and prior revascularization procedures (50% vs 38%; P < .001). Despite higher comorbidity burdens, long-term survival was better for patients taking statins in crude (risk ratio [RR], 0.7; P < .001), adjusted (hazard ratio, 0.7; P = .001), and propensity-matched analyses (hazard ratio, 0.7; P = .03). In subgroup analysis, a survival advantage was evident in patients on statins with CLI (5-year survival rate, 63% vs 54%; log-rank, P = .01) but not claudication (5-year survival rate, 84% vs 80%; log-rank, P = .59). Statin therapy was not associated with 1-year rates of major amputation (12% vs 11%; P = .84) or graft occlusion (20% vs 18%; P = .58) in CLI patients. Perioperative myocardial infarction occurred more frequently in patients on a statin in crude analysis (RR, 2.2; P = .01) but not in the matched cohort (RR, 1.9; P = .17). CONCLUSIONS: Statin therapy is associated with a 5-year survival benefit after infrainguinal bypass in patients with CLI. However, 1-year limb-related outcomes were not influenced by statin use in our large observational cohort of patients undergoing revascularization in New England. Copyright © 2015 Society for Vascular Surgery. Published by Elsevier Inc. All rights reserved.
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    Validation of the Society for Vascular Surgery's Objective Performance Goals for critical limb ischemia in everyday vascular surgery practice

    Goodney, Philip P.; Schanzer, Andres; DeMartino, Randall R.; Nolan, Brian W.; Hevelone, Nathanael; Conte, Michael S.; Powell, Richard J.; Cronenwett, Jack L.; Vascular Study Group of New England (2011-02-22)
    BACKGROUND: To develop standardized metrics for expected outcomes in lower extremity revascularization for critical limb ischemia (CLI), the Society for Vascular Surgery (SVS) has developed objective performance goals (OPGs) based on aggregate data from randomized trials of lower extremity bypass (LEB). It remains unknown, however, if these targets can be achieved in everyday vascular surgery practice. METHODS: We applied SVS OPG criteria to 1039 patients undergoing 1039 LEB operations for CLI with autogenous vein (excluding patients on dialysis) within the Vascular Study Group of New England (VSGNE). Each of the individual OPGs was calculated within the VSGNE dataset, along with its surrounding 95% confidence intervals (CIs) and compared to published SVS OPGs using chi(2) comparisons and survival analysis. RESULTS: Across most risk strata, patients in the VSGNE and SVS OPG cohorts were similar (clinical high-risk [age >80 years and tissue loss]: 15.3% VSGNE; 16.2% SVS OPG; P = .58; anatomic high risk [infrapopliteal target artery]: 57.8% VSGNE; 60.2% SVS OPG; P = .32). However, the proportion of VSGNE patients designated as conduit high-risk (lack of single-segment great saphenous vein) was lower (10.2% VSGNE; 26.9% SVS OPG;P < .001). The primary safety endpoint, major adverse limb events (MALE) at 30 days, was lower in the VSGNE cohort (3.2%; 95% CI, 2.3-4.6) than the SVS OPG cohort (6.2%; 95% CI, 4.2-8.1; P = .05). The primary efficacy OPG endpoint, freedom from any MALE or postoperative death within the first year (MALE + postoperative death [POD]), was similar between VSGNE and SVS OPG cohorts (77%; 95% CI, 74%-80%) SVS OPG, 74% (95% CI, 71%-77%) VSGNE, P = .58). In the remaining safety and efficacy OPGs, the VSGNE cohort met or exceeded the benchmarks established by the SVS OPG cohort. CONCLUSION: Community and academic centers in everyday vascular surgery practice can meet OPGs derived from centers of excellence in LEB. Quality improvement initiatives, as well as clinical trials, should incorporate OPGs in their outcome measures to facilitate communication and comparison of risk-adjusted outcomes in the treatment of CLI. All rights reserved.
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