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Updated: May 17, 2026

Rapid Point-of-Care Assay of Enoxaparin Anticoagulant Efficacy in Whole Blood
Published on: October 12, 2012
Characterizing the association of heparin dose and activated clotting time on lower extremity bypass outcomes
Craig S Brown1, Shukri Dualeh1, Nicholas H Osborne1
1Department of Surgery, Section of Vascular Surgery, University of Michigan, Ann Arbor, MI; Center for Healthcare Outcomes and Policy, Institute for Healthcare Policy and Innovation, University of Michigan, Ann Arbor, MI.
Background:
Anticoagulation is essential for preventing vascular thrombotic complications after vascular occlusive control. The effects of heparin dosing or monitoring activated clotting time (ACT) on postoperative outcomes remain poorly characterized.
Methods:
Using data from a statewide collaborative, we investigated the rates of postoperative bleeding, arterial/graft thrombosis, major amputation, readmission, and death among patients within 30 days after lower extremity bypass with vein. We used a Bayesian random-effects multivariable logistic regression model to investigate the association between heparin dosing, ACT monitoring, and the interaction effect of the two, allowing for patients to cluster within surgeons and surgeons to cluster within hospitals.
Results:
A total of 10,040 patients undergoing lower extremity bypass with vein from 34 hospitals were included, among whom 215 (2.1%) experienced predischarge arterial/graft thrombosis, 167 (1.7%) postoperative bleeding, 950 (9.5%) 30-day amputation, 1132 (11.3%) 30-day readmission, and 51 (0.5%) 30-day mortality. Rates of ACT monitoring varied substantially across hospitals (12%-100%) with 4921 (49.1%) patients having ACT monitored. Heparin dose was not associated with postoperative thrombosis (odds ratio [OR], 0.88; 95% credible interval, 0.70-0.1.11), 30-day amputation (OR, 0.93; 95% credible interval, 0.81-1.05), or bleeding (OR, 0.99; 95% credible interval, 0.76-1.29). The administration of protamine was associated with reduced postoperative bleeding (OR, 0.51; 95% credible interval, 0.36-0.72). Achieving an ACT of >250 was not associated with postoperative bleeding, thrombosis, amputation, readmission, or mortality. Receiver operating characteristic curve analysis suggests that no ACT value is a reliable cutoff for any of the assessed outcomes.
Conclusions:
Heparin dose, intraoperative ACT monitoring, and achieving an ACT of >250 were not associated with any of the outcomes assessed. Furthermore, no ACT target reliably predicted any outcome on receiver operating characteristic curve analysis. Administering adequate heparin doses without ACT monitoring may provide equivalent outcomes without the associated costs and logistical challenges.
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