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November 1, 1984Journal of Applied Physiology71 citations

Evaluation of a microprocessor-controlled exercise testing system

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NJN. L. Jones

Key Result

The Beckman Horizon MMC exercise-testing system demonstrated high precision for measuring VO2 (r=0.991) and VCO2 (r=0.993) during steady-state exercise.

Study Design

Type

Observational (n=115)

Structured PICO

Does the Beckman Horizon MMC microprocessor-controlled exercise testing system accurately measure ventilation and gas exchange compared to standard methods?

P
Population
Healthy subjects and patients with cardiorespiratory disorders (n=10) undergoing exercise testing, including steady-state exercise (n=100) and comparison with breath-by-breath analysis (n=5).
I
Intervention
Beckman Horizon MMC microprocessor-controlled exercise testing system
C
Comparator
Breath-by-breath analysis system (in a subset of n=5)
O
Outcome
Precision and accuracy of measurements of ventilation (VE), VO2, and VCO2surrogate

The Beckman Horizon MMC microprocessor-controlled exercise testing system provides precise and accurate measurements of ventilation and gas exchange during exercise.

Limitations

  • Variable pattern of breathing limited strict comparisons in some patients with cardiorespiratory disorders.

Abstract

We evaluated a new exercise-testing system (Beckman Horizon MMC), incorporating a microprocessor that controls the acquisition of data, corrects for time delays, applies calibration factors, ensures quality control, and presents results in a variety of formats. Precision of measurements of ventilation (VE) and mixed expired gas concentrations was high. In steady-state exercise (n = 100) VO2 was measured with a precision (+/- SD) of 66 ml/min (4.3%), (r = 0.991); there was a small (4.62%) systematic underestimation of VCO2, but precision was comparable with VO2, with SD being 67 ml/min (4.55%) (r = 0.993). Good agreement was obtained between measurements made in progressive incremental exercise in healthy subjects with correlation coefficients of 0.997 for VE, 0.995 for VO2, and 0.994 for VCO2. Agreement in patients with cardiorespiratory disorders (n = 10) was similar, except in three patients in whom a variable pattern of breathing limited strict comparisons. Comparison with a breath-by-breath analysis system (n = 5) showed that rapid changes in VE, VCO2, and VO2 were followed accurately; the half time for a change in VO2 was not systematically different between the two systems (SD, 3.34 s, r = 0.951). The incorporation of microprocessor-controlled calibration procedures, which are simple to carry out frequently, was judged to be an important feature of this system.

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Cite This Study

N. L. Jones (1984) conducted an observational in Healthy subjects and patients with cardiorespiratory disorders (n=115). Beckman Horizon MMC exercise-testing system vs. Breath-by-breath analysis system was evaluated on Precision and agreement of measurements of ventilation (VE), VO2, and VCO2. The Beckman Horizon MMC exercise-testing system demonstrated high precision for measuring VO2 (r=0.991) and VCO2 (r=0.993) during steady-state exercise.

synapsesocial.com/papers/6a08de60720b08f65a5b744chttps://doi.org/10.1152/jappl.1984.57.5.1312
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