Biomechanics of ergometric stress test: Regional and local effects on elastic, transitional and muscular human arteries

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Abstract

Ergometric exercise stress tests (EST) give important information about the cardiovascular (CV) response to increased demands. The expected EST-related changes in variables like blood pressure and heart rate are known, but those in the arterial biomechanics are controversial and incompletely characterized. In this context, this work aims were to characterize the regional and local arterial biomechanical behaviour in response to EST; to evaluate its temporal profile in the post-EST recovery phase; and to compare the biomechanical response of different to EST. Methods: In 16 non-trained healthy young subjects the carotid-femoral pulse wave velocity and the carotid, femoral and brachial arterial distensibility were non-invasively evaluated before (Rest) and after EST. Main results: The EST resulted in an early increase in the arterial stiffness, evidenced by both, regional and local parameters (pulse wave velocity increase and distensibility reduction). When analyzing conjunctly the different post-EST recovery stages there were quali-quantitative differences among the arterial local stiffness response to EST. The biomechanical changes could not be explained only by blood pressure variations.

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Valls, G., Torrado, J., Farro, I., Bia, D., Zócalo, Y., Lluberas, S., … Armentano, R. L. (2011). Biomechanics of ergometric stress test: Regional and local effects on elastic, transitional and muscular human arteries. In Journal of Physics: Conference Series (Vol. 313). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/313/1/012013

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