2011
DOI: 10.1007/s00421-011-2062-5
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An integrated exercise response and muscle fatigue model for performance decrement estimates of workloads in oxygen-limiting environments

Abstract: The performance dynamic physiology model (DPM-PE) integrates a modified muscle fatigue model with an exercise physiology model that calculates the transport and delivery of oxygen to working muscles during exposures of oxygen-limiting environments. This mathematical model implements a number of physiologic processes (respiration, circulation, tissue metabolism, diffusion-limited gas transfer at the blood/gas lung interface, and ventilatory control with afferent feedback, central command and humoral chemorecept… Show more

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Cited by 11 publications
(10 citation statements)
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“…A dynamic physiology model (DPM) that incorporates blunt and blast trauma injury and chemical damage to the lungs has been developed [24,25]. Damage in the DPM has been correlated with fluid infiltration, which can be quantified during necropsy by measurements of lung weight.…”
Section: Discussionmentioning
confidence: 99%
“…A dynamic physiology model (DPM) that incorporates blunt and blast trauma injury and chemical damage to the lungs has been developed [24,25]. Damage in the DPM has been correlated with fluid infiltration, which can be quantified during necropsy by measurements of lung weight.…”
Section: Discussionmentioning
confidence: 99%
“…The alveolar diffusing capacities for oxygen (40 ml/mmHg-min) and carbon dioxide (800 ml/mmHg-min) were based on the data of Hill [37], The alveolar oxygen diffusing capacity was assumed to be a function of oxygen partial pressure and workload as described by Graeser [38] (Equation 15), where PitalicAlv,O2 is alveolar oxygen (mmHg) and Work is the exercise load in Watts. All DPM parameters outside of the pulmonary system are modeled as previously described [20,21]. The airway volumes measured by Horsfield represent an average human.…”
Section: Methodsmentioning
confidence: 99%
“…To maintain similar structure, surface areas were scaled by body mass to the 2/3 power. Scaling in the non-airway compartments of the DPM has been previously described [20,21]. …”
Section: Methodsmentioning
confidence: 99%
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“…Враховуючи тісний зв'язок між аеробною про-дуктивністю та продуктивністю м'язової роботи [17], можна припустити, що одним з можливих механізмів такого зростання є саме покращання процесів енергозабезпечення скорочувальної діяльності скелетних м'язів під дією АТФ-лонг. Таким чином, отримані дані вказують на наявність позитивного впливу пливу метаболічного препара-ту на процес аеробного енергозабезпечення у бігунів на середні дистанції, одним з можливих механізмів якого є стимулююча дія АТФ-лонг на функціональні можливості серцево-судинної систе-ми та скелетних м'язів.…”
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