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The brain-to-brain loop concept for laboratory testing 40 years after its introduction.
Mario Plebani1, Michael Laposata, George D Lundberg
1Department of Laboratory Medicine, University of Padova, Italy. mario.plebani@unipd.it
American Journal of Clinical Pathology
|November 19, 2011
Summary
The brain-to-brain loop for laboratory testing has evolved over 40 years. This review examines changes in medical practice and their impact on preanalytic, analytic, and postanalytic errors in lab testing.
Area of Science:
- Clinical pathology
- Laboratory medicine
- Medical diagnostics
Background:
- The brain-to-brain loop model for laboratory testing was introduced 40 years ago by Lundberg.
- This model outlines the physician's role from test selection to result transmission.
- It established a framework for classifying errors as preanalytic, analytic, and postanalytic.
Purpose of the Study:
- To review the evolution of the brain-to-brain loop in laboratory testing over the past four decades.
- To analyze the impact of changes in medical practice on this loop.
- To discuss the implications for understanding and managing laboratory testing errors.
Main Methods:
- Review of historical concepts and changes in laboratory testing.
- Analysis of the impact of evolving medical practices on the laboratory testing workflow.
- Examination of error classification (preanalytic, analytic, postanalytic) within the context of the altered loop.
Main Results:
- Significant alterations in the brain-to-brain loop have occurred due to changes in medical practice.
- These changes have implications for the identification and analysis of laboratory testing errors.
- The traditional preanalytic, analytic, and postanalytic error framework remains relevant but requires adaptation.
Conclusions:
- The brain-to-brain loop concept has significantly influenced laboratory quality assessment.
- Contemporary medical practices necessitate a re-evaluation of how errors are managed within the evolving loop.
- Understanding these changes is crucial for improving the accuracy and reliability of laboratory diagnostics.

