Key result
Automated platelet counts demonstrated significantly lower variability than manual counts (CV 10.12% vs 30.39%; P<0.001) and accurately predicted clinical bleeding.
Why the study?
Are automated platelet counts reliable at low levels and do they accurately predict clinical bleeding compared to manual counts in thrombocytopenic patients?
Observational
Are automated platelet counts reliable at low levels and do they accurately predict clinical bleeding compared to manual counts in thrombocytopenic patients?
Absolute Event Rate: 10.12% vs 30.39%
p-value: p=< 0.001
Automated platelet counts are highly reliable at low levels and accurately predict clinical bleeding, supporting their use to guide prophylactic platelet transfusion protocols.
Supports automated counts for transfusion decisions in thrombocytopenia; leaves open need for RCTs before practice change.
The 20 x 10(9)/L (20,000/microliters) threshold for prophylactic platelet transfusion may be unnecessarily high. The widespread use of this threshold may reflect lack of confidence in the reliability of low platelet counts. We evaluated the performance of automated platelet counts and their relation to clinical bleeding. First, we prepared serial blood dilutions with "target" platelet counts from 2 to 40 x 10(9)/L. For the 48 measurements on 2 x 10(9)/L "target" dilutions, values of 1 or 2 x 10(9)/L were obtained with the Sysmex NE-8000 analyzer (mean 1.44 x 10(9)/L; SD 0.31 x 10(9)/L). Similarly, for 5 x 10(9)/L "target" counts, automated counts were 3-6 x 10(9)/L (mean 4.42 x 10(9)/L; SD 0.18 x 10(9)/L). Similar results were observed with all other "target" levels, with coefficients of variation (CV) from 6.39% to 7.71% with 10-40 x 10(9)/L "target" values. Secondly, we compared triplicate automated and manual platelet counts on thrombocytopenic patients with platelet counts from 4-30 x 10(9)/L. The triplicate automated platelet counts differed by no more than 5 x 10(9)/L among themselves, whereas the manual counts varied by as much as 30 x 10(9)/L. Mean platelet counts: automated, 14.40 x 10(9)/L (CV 10.12%); manual, 16.48 x 10(9)/L (CV 30.39%) (P = 0.038 for counts; P < 0.001 for CV). Finally, we prospectively evaluated bleeding in thrombocytopenic patients (1,809 patient-days of observation). Univariate and multivariate logistic regression analysis revealed highly significant correlations between the automated platelet count and major and minor bleeding manifestations. Thus, automated platelet counts are highly reliable and accurately predict clinical bleeding. The use of automated analyzers should facilitate improved prophylactic platelet transfusion protocols.
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Lawrence et al. (1995) conducted an observational in Thrombocytopenia. Automated platelet counts vs. Manual platelet counts was evaluated on Coefficient of variation (CV) of platelet counts (p=< 0.001). Automated platelet counts demonstrated significantly lower variability than manual counts (CV 10.12% vs 30.39%; P<0.001) and accurately predicted clinical bleeding.
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