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Transfer factor (diffusing capacity) standardized for alveolar volume: validation, reference values and applications
D J Chinn1, J E Cotes, R Flowers
1Dept of Physiological Sciences, Medical School, Newcastle-upon-Tyne, UK.
The European Respiratory Journal
|June 1, 1996
Summary
A new linear model standardizes transfer factor (TL) for alveolar volume (VA), improving accuracy over existing methods. This model offers clinically useful reference values for lung function assessment, especially when VA varies.
Area of Science:
- Pulmonary Physiology
- Respiratory Medicine
Background:
- Transfer factor (TL) is known to vary with alveolar volume (VA).
- The standard carbon monoxide transfer coefficient (KCO) method (TL/VA) may not accurately reflect this relationship.
- Investigating alternative models to standardize TL for VA is crucial for accurate lung function assessment.
Purpose of the Study:
- To evaluate linear and exponential models for standardizing TL by VA.
- To determine appropriate reference values for these models.
- To assess the clinical utility of a validated model for TL standardization.
Main Methods:
- Compared within- and between-subject relationships of TL to VA at varying inspiration depths and lung sizes.
- Assessed asymptomatic, nonsmoking Caucasian adults (31 males in lab, 503 in population studies).
- Developed and validated new reference equations for TL standardization using linear regression.
Main Results:
- A linear model demonstrated consistent partial regression coefficients of TL on VA, standardized for height (H), across subjects and VA ranges.
- The exponential model did not show similar consistency.
- New SI unit reference equations were derived: TL = 11.52 H + 2.72 VA.H-2 - 0.051 Age -12.35 (males, RSD 1.17) and TL = 4.87 H + 2.29 VA.H-2 - 0.019 Age -3.03 (females, RSD 0.92).
- The linear model explained variations in published TL reference values and improved prediction accuracy compared to current methods.
Conclusions:
- A linear model effectively standardizes transfer factor (TL) for alveolar volume (VA) and height (H).
- The derived reference equations offer improved accuracy for predicting normal TL, particularly when VA deviates from the norm.
- This model provides a clinically useful alternative to the carbon monoxide transfer coefficient, simplifying lung function assessment.