Numerical and Experimental Investigation of Novel Blended Bifurcated Stent Grafts with Taper to Improve Hemodynamic Performance

Joint Authors

Sun, Anqiang
Deng, Xiaoyan
Liu, Ming
Wang, Zhenze

Source

Computational and Mathematical Methods in Medicine

Issue

Vol. 2018, Issue 2018 (31 Dec. 2018), pp.1-10, 10 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2018-09-09

Country of Publication

Egypt

No. of Pages

10

Main Subjects

Medicine

Abstract EN

The typical helical flow within the human arterial system is widely used when designing cardiovascular devices, as this helical flow can be generated using the “crossed limbs” strategy of the bifurcated stent graft (BSG) and enhanced by the tapered structure of arteries.

Here, we propose the use of a deflected blended bifurcated stent graft (BBSG) with various tapers, using conventional blended BSGs with the same degree of taper as a comparison.

Hemodynamic performances, including helical strength and wall shear stress- (WSS-) based indicators, were assessed.

Displacement forces that may induce stent-graft migration were assessed using numerical simulations and in vitro experiments.

The results showed that as the taper increased, the displacement force, helicity strength, and time-averaged wall shear stress (TAWSS) within the iliac grafts increased, whereas the oscillating shear index (OSI) and relative residence time (RRT) gradually decreased for both types of BBSGs.

With identical tapers, deflected BBSGs, compared to conventional BBSGs, exhibited a wider helical structure and lower RRT on the iliac graft and lower displacement force; however, there were no differences in hemodynamic indicators.

In summary, the presence of tapering facilitated helical flow and produced better hemodynamic performance but posed a higher risk of graft migration.

Conventional and deflected BBSGs with taper might be the two optimal configurations for endovascular aneurysm repair, given the helical flow.

The deflected BBSG provides a better configuration, compared to the conventional BBSG, when considering the reduction of migration risk.

American Psychological Association (APA)

Liu, Ming& Wang, Zhenze& Sun, Anqiang& Deng, Xiaoyan. 2018. Numerical and Experimental Investigation of Novel Blended Bifurcated Stent Grafts with Taper to Improve Hemodynamic Performance. Computational and Mathematical Methods in Medicine،Vol. 2018, no. 2018, pp.1-10.
https://search.emarefa.net/detail/BIM-1132196

Modern Language Association (MLA)

Liu, Ming…[et al.]. Numerical and Experimental Investigation of Novel Blended Bifurcated Stent Grafts with Taper to Improve Hemodynamic Performance. Computational and Mathematical Methods in Medicine No. 2018 (2018), pp.1-10.
https://search.emarefa.net/detail/BIM-1132196

American Medical Association (AMA)

Liu, Ming& Wang, Zhenze& Sun, Anqiang& Deng, Xiaoyan. Numerical and Experimental Investigation of Novel Blended Bifurcated Stent Grafts with Taper to Improve Hemodynamic Performance. Computational and Mathematical Methods in Medicine. 2018. Vol. 2018, no. 2018, pp.1-10.
https://search.emarefa.net/detail/BIM-1132196

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1132196