Towards the non-invasive determination of arterial wall distensible properties: New approach using old formulae.

Li, Ye; Giudici, Alessandro; Wilkinson, Ian B; Khir, Ashraf W · J Biomech · 2021

basic_science · Level V

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Abstract

Arterial function and wall mechanical properties are important determinants of hemodynamics in the circulation. However, their non-invasive determination is not widely available. Therefore, the aim of this work is to present a novel approach for the non-invasive determination of vessel's distensibility and elastic modulus. Simultaneous measurements of vessel's Diameter (D) and flow velocity (U) were recorded to determine local wave speed (<sub>n</sub>C) in flexible tubes and calf aortas non-invasively using the lnDU-loop method, which was used to calculate the Distensibility (<sub>n</sub>D<sub>s</sub>) and Elastic Modulus (<sub>n</sub>E), also non-invasively. To validate the new approach, the non-invasive results were compared to traditionally invasive measurements of Dynamic Distensibility (D<sub>sd</sub>) and Tangential Elastic Modulus (E<sub>m</sub>). In flexible tubes, the average <sub>n</sub>D<sub>s</sub> was higher and <sub>n</sub>E was lower than D<sub>sd</sub> and E<sub>m</sub> by 1.6% and 6.9%, respectively. In calf aortas, the results of <sub>n</sub>D<sub>s</sub> and <sub>n</sub>E agreed well with those of D<sub>sd</sub> and E<sub>m</sub>, as demonstrated by Bland-Altman technique. The results of <sub>n</sub>D<sub>s</sub> and <sub>n</sub>E are comparable to those determined using traditional techniques. Our results suggest that <sub>n</sub>D<sub>s</sub> and <sub>n</sub>E could be measured in-vivo non-invasively, given the possibility of measuring D and U to obtain <sub>n</sub>C. Further studies are warranted to establish the clinical usefulness of the new approach.

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