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R M Whitlock

Publications and source records attributed to R M Whitlock.

74 records · Page 5Linked to original sources

Fractional carbon monoxide uptake and "diffusing capacity" in models of pulmonary maldistribution.

Two models of pulmonary non-uniformity have been studied to determine the effects of maldistribution on "diffusing capacity", measured by steady state (DSS) and single breath (DSB) methods, and on the fractional carbon monoxide uptake (U). The distribution of ventilation with respect to lung volume, perfusion and diffusing capacity, as well as breath-holding time, series inhomogeneity and sequential emptying, variously affect DSS and DSB. Of these, only the distribution of ventilation with respect to diffusing capacity (V/D) influences U. In addition, U is very sensitive to dead space ventilation and thus to respiratory frequency, and this is the chief defect of this very simple measurement. The models described indicate ways in which frequency dependence of U may be allowed for, leaving total diffusing capacity and V/D distribution as its sole determinants.

Carbon Monoxide↗

Prediction equations for fractional CO uptake derived from 50 healthy subjects.

Fractional CO uptake was measured in 50 healthy men and women aged 18 to 65 years in the sitting and supine positions and during the steady state of treadmill exercise at four different workloads. The unwanted influence of respiratory frequency and ventilation on fractional uptake and the indirect effect of workload (via changes in total diffusing capacity) were taken into account, according to previous theoretical analysis, in formulating prediction equations. Correlations for the best equations were between 0.816 and 0.971. The extra precision they afford makes the fractional CO uptake a potentially useful clinical measurement, less prone to spurious results than conventional measurements of diffusing capacity.

Adolescent↗