Single-breath determination of functional dead space.
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Biomedical subjects
Publications and source records attributed to D Bargeton.
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The kinematics of spontaneous breathing at rest and during moderate exercise is described exactly by a non-linear differential equation, the parameters of which are determined by observation with a pneumotachograph. Analogue circuits are used for the determination of the coefficients and for the comparison by superimposition of the actual spirogram with its simulation. The ventilatory system, taken as a whole and without any assumption concerning its structure, works as a non-linear oscillator. If the classical distinction between a passive and an active ventilatory system is accepted, the concept of a linear equivalent of a non-linear oscillator is valid for the description of the properties of the passive system. It affords some of the advantages of linear mechanics and indicates the restrictions put upon the use of a linear hypothesis. The role of the different terms in determining the pattern of breathing is displayed and the correlation of scale factors with body size is shown. The physiological meaning of the components of muscle action is discussed.
In the study of the physiological regulation of respiration through a control system model it is necessary to test the ventilatory response to various forcing functions of either the parrtial pressure of alveolar carbon dioxide (PACO2) or oxygen (PAO2). Since PACO2 and PAO2 are both functions of alveolar ventilation and metabolic rate, such a result cannot be obtained by merely changing the composition of the inspired gases without a feedback control. Thus a servomechanism is necessary. The input to the servomechanism is an instantaneous determination of PACO2 and PAO2. This is accomplished by using the criterion of equality of the exchange ratio in mean alveolar gas and mean expired gas. The servomechanism described has three essential characteristics: rapidity, accuracy, and stability. In experiments of step, ramp, and sinusoidal forcing functions, variations of PACO2 have been obtained without change in PAO2, and step variations of PAO2 have been obtained without change in PACO2.
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