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Titlebook: Respiratory Control; A Modeling Perspecti George D. Swanson,Fred S. Grodins,Richard L. Hughs Book 1989 Plenum Press, New York 1989 Multivar

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Estimating Arterial PCO2 from Flow-Weighted and Time-Average Alveolar PCO2 During Exerciseion for moderate exercise and by the degree of the compensatory hyperventilation at work rates which engender a metabolic acidemia. But in order to avoid the necessity for intra-arterial sampling, which for sufficient data-density usually requires an indwelling catheter, several investigators have p
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Interrelation of Respiratory Responses to ,co,, Pedal Rate and Loading Force During Cycle Exercise.). In human experiments using ergometer devices, changes in .co. during exercise can be achieved by changing the magnitude of two components of exercise performed on the devices, i.e., limb movement speed and limb loading force. As to how these types of exercise exert influences on the ..-.co. rela
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Gas-Exchange Inferences for the Proportionality of the Cardiopulmonary Responses During Phase 1 of Eaccount for the initial hyperpnea of muscular exercise; the immediacy of the response being incompatible with humorally-mediated stimuli, released from the working muscles, influencing the carotid bodies and ventral-medullary surface chemosensory regions.
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On Modelling Alveolar Oxygen Uptake Kineticsh techniques. Measuring the oxygen uptake kinetics at the working tissue (.O.T) during whole body exercise is not possible in humans. However through computer modelling, the dynamics response of .O.T can be estimated.. The model must reproduce what can already be measured before it can make predicti
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A General-Purpose Model for Investigating Dynamic Cardiopulmonary Responses During Exerciseigation of the consequent implications of the chosen model structure on a range of physiological responses. Our approach here was to pursue the latter feature, as it is evident that physiological inferences are often drawn in the literature without actual determination of whether the inferred behavi
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Lactate Balance During Low Levels of Exerciseon of that response (Wasserman et al, 1987). The pattern of change in blood lactate concentration in response to exercise is widely held to be biphasic, with a threshold below which no increase occurs. An alternative view is that lactate increases exponentially (Yen et al, 1983), in which case the c
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