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PMID: 31765935 Published · ppublish English Case Reports Journal Article

Tracking geometric and hemodynamic alterations of an arteriovenous fistula through patient-specific modelling.

Computer methods and programs in biomedicine ·Vol. 186 ·2020-04-00 ·页码 105203

Carroll JE, Colley ES, Thomas SD, Varcoe RL, Simmons A, Barber TJ

Abstract

The use of patient-specific CFD modelling for arteriovenous fistulae (AVF) has shown great clinical potential for improving surveillance, yet the use of imaging modes such as MRI and CT for the 3D geometry acquisition presents high costs and exposure risks, preventing regular use. We have developed an ultrasound based procedure to bypass these limitations. A scanning procedure and processing pipeline was developed specifically for CFD modelling of AVFs, using a freehand ultrasound setup combining B-mode scanning with 3D probe motion tracking. The scanning procedure involves sweeping along the vasculature to create a high density stack of B-mode frames containing the lumen geometry. This stack is converted into a continuous volume and transient flow waveforms are recorded at the boundaries, synchronised with ECG and automatically digitised, forming realistic boundary conditions for the CFD models. This is demonstrated on a diseased patient-specific AVF. The three scans obtained using this procedure varied in geometry and flow behaviour, with regions of disease located in the first two scans. The outcome of the second procedure seen in the third scan indicated successful restoration with no sites of disease and higher flow. The models gave insight into the lumenal changes in diameter for both the artery and vein segments, as well as characterising hemodynamic behaviours in both the diseased and restored states. Vascular segment resistances obtained from the CFD models indicate a significant reduction once disease was removed, resulting in much higher flows enabling the patient to resume dialysis. The methodology described in this study allowed for a multifaceted analysis and high level tracking in terms of both geometry and flow behaviours for a patient case, demonstrating significant clinical utility and practicality, as well as enabling further research into vascular disease progression in AVFs through longitudinal analysis.

Keywords
Arteriovenous fistula Dialysis Surveillance Ultrasound Vascular access
MeSH 主题词
Aged Aged, 80 and over Algorithms Arteriovenous Fistula/physiopathology Hemodynamics Humans Male Patient-Specific Modeling Regional Blood Flow
作者与单位
共 6 位作者,点击展开单位 / ORCID
Carroll John E
School of Mechanical and Manufacturing Engineering, University of New South Wales, Sydney, 2052, NSW, Australia.
Colley Eamonn S
School of Mechanical and Manufacturing Engineering, University of New South Wales, Sydney, 2052, NSW, Australia.
Thomas Shannon D
Prince of Wales Hospital, Sydney, 2031, NSW, Australia; School of Medicine, University of New South Wales, Sydney, 2052, NSW, Australia.
Varcoe Ramon L
Prince of Wales Hospital, Sydney, 2031, NSW, Australia; School of Medicine, University of New South Wales, Sydney, 2052, NSW, Australia.
Simmons Anne
School of Mechanical and Manufacturing Engineering, University of New South Wales, Sydney, 2052, NSW, Australia.
Barber Tracie J
School of Mechanical and Manufacturing Engineering, University of New South Wales, Sydney, 2052, NSW, Australia. Electronic address: [email protected].
Article Info
Journal
Computer methods and programs in biomedicine
Abbr.
Comput Methods Programs Biomed
ISSN
1872-7565
Corresponding email
Published
2020-04-00
电子出版
2019-00-12
页码
105203
Language
English
Country/Region
Ireland
NLM ID
8506513
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