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May 9, 1994Archives of Internal Medicine44 citations

Computer-Assisted Dosing of Heparin

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BKBeverly P. Kershaw

Structured PICO

Does pharmacy-based, computer-assisted dosing of heparin improve the speed and accuracy of achieving therapeutic APTT in patients requiring intravenous heparin?

P
Population
188 patients requiring intravenous heparin therapy (n=131 in computer-assisted group, n=57 in historical cohort)
I
Intervention
Pharmacy-based, computer-assisted dosing of intravenous heparin therapy (bolus 70 U/kg of ideal body weight, or 100 U/kg for pulmonary embolism; computer-generated infusion dose generally 13 to 16 U/kg per hour; target APTT ratio 1.8 times baseline)
C
Comparator
Randomly selected historical cohort in whom heparin therapy was managed by the primary physician
O
Outcome
Achievement of therapeutic APTT (proportion achieving therapeutic APTT within 24 and 48 hours, median time to therapeutic APTT, and proportion of APTTs in therapeutic range)surrogate

Pharmacy-based, computer-assisted dosing of intravenous heparin is feasible and significantly improves the speed and accuracy of achieving therapeutic anticoagulation compared to standard physician management.

Abstract

BACKGROUND: Expert consultation by means of established practice guidelines has been shown to lead to improved accuracy of inpatient anticoagulation therapy, with a reduction in the frequency of hemorrhagic complications. We evaluated a different strategy to improve the accuracy of in-hospital anticoagulation: pharmacy-based, computer-assisted dosing of intravenous heparin therapy. METHODS: Patients treated with computer-assisted dosing of heparin (N = 131) were compared with a randomly selected historical cohort (N = 57) in whom heparin therapy was managed by the primary physician. All patients treated by the pharmacy team received a bolus of heparin, 70 U/kg of ideal body weight, except for patients with pulmonary embolism, who received 100 U/kg of ideal body weight. A computer-generated infusion dose was selected (generally 13 to 16 U/kg per hour). The target was an activated partial thromboplastin time (APTT) ratio of 1.8 times the patient's baseline APTT, with a therapeutic range of 1.5 to 2.5 times baseline. Computer-assisted dosage recommendations were generated after each APTT measurement. RESULTS: In the historical control group, 62% of the patients achieved a therapeutic APTT during the first 24 hours; 17% failed to reach a therapeutic level by 48 hours. The median time to reach a therapeutic APTT was 15 hours. Of all 696 APTTs in this group, 42% were below, 43% in, and 15% above the therapeutic range. In the computer-assisted group, 90% achieved a therapeutic APTT within 24 hours (P < .001); 97% had a therapeutic APTT by 48 hours (P < .01). The median time to achieve a therapeutic APTT was 7 hours (P < .001). Of all 880 APTTs in this group, 17% were below, 75% in, and 8% above the therapeutic range (P < .001). CONCLUSIONS: Pharmacy-based, computer-assisted dosing of heparin is feasible and results in faster and more accurate anticoagulant dosing.

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Cite This Study

Beverly P. Kershaw (1994) studied this question.

synapsesocial.com/papers/6a702c7975498292b7098e16https://doi.org/10.1001/archinte.1994.00420090089009
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Also Consider

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

  1. 1Rapid Determination of Maintenance Heparin Infusion Rates with the Use of Non-Steady-State Heparin Concentrations1993 · 10 citations
  2. 2Analyzing a Health-System's Use of Unfractionated Heparin to Ensure Optimal Anticoagulation2005 · 4 citations
  3. 3Evaluation of a Weight‐Based Heparin Dosing Protocol2005 · 3 citations
  4. 4Appropriate Use of Heparin1995 · 43 citations
  5. 5Optimizing Heparin Quality Assurance Utilizing Electronic Data Abstraction2024