Computational fluid dynamics modeling of hemodynamic parameters in the human diseased aorta: A systematic review

CW Ong, I Wee, N Syn, S Ng, HL Leo… - Annals of Vascular …, 2020 - Elsevier
Background The analysis of the correlation between blood flow and aortic pathology through
computational fluid dynamics (CFD) shows promise in predicting disease progression, the …

The application of computational modeling for risk prediction in type B aortic dissection

B Munshi, LP Parker, PE Norman, BJ Doyle - Journal of vascular surgery, 2020 - Elsevier
Objective New tools are urgently needed to help with surgical decision-making in type B
aortic dissection (TBAD) that is uncomplicated at the time of initial presentation. This …

Multi-modality image-based computational analysis of haemodynamics in aortic dissection

D Dillon-Murphy, A Noorani, D Nordsletten… - … and modeling in …, 2016 - Springer
Aortic dissection is a disease whereby an injury in the wall of the aorta leads to the creation
of a true lumen and a false lumen separated by an intimal flap which may contain multiple …

Multi-stage learning for segmentation of aortic dissections using a prior aortic anatomy simplification

D Chen, X Zhang, Y Mei, F Liao, H Xu, Z Li, Q Xiao… - Medical image …, 2021 - Elsevier
Aortic dissection (AD) is a life-threatening cardiovascular disease with a high mortality rate.
The accurate and generalized 3-D reconstruction of AD from CT-angiography can effectively …

[HTML][HTML] Computational study of haemodynamic effects of entry-and exit-tear coverage in a DeBakey type III aortic dissection: technical report

C Karmonik, J Bismuth, DJ Shah, MG Davies… - European journal of …, 2011 - Elsevier
OBJECTIVES: Outcome prediction in DeBakey Type III aortic dissections (ADs) remains
challenging. Large variations in AD morphology, physiology and treatment exist. Here, we …

A patient-specific study of type-B aortic dissection: evaluation of true-false lumen blood exchange

D Chen, M Müller-Eschner… - Biomedical engineering …, 2013 - Springer
Background Aortic dissection is a severe pathological condition in which blood penetrates
between layers of the aortic wall and creates a duplicate channel–the false lumen. This …

Computational biomechanics in thoracic aortic dissection: today's approaches and tomorrow's opportunities

BJ Doyle, PE Norman - Annals of biomedical engineering, 2016 - Springer
Dissection of an artery is characterised by the separation of the layers of the arterial wall
causing blood to flow within the wall. The incidence rates of thoracic aortic dissection (AoD) …

MRI in CFD for chronic type B aortic dissection: Ready for prime time?

Q Wang, X Guo, M Brooks, J Chuen, EKW Poon… - Computers in Biology …, 2022 - Elsevier
Objectives Better tools are needed for risk assessment of Type B aortic dissection (TBAD) to
determine optimal treatment for patients with uncomplicated disease. Magnetic resonance …

[HTML][HTML] A new method for quantification of false lumen thrombosis in aortic dissection using magnetic resonance imaging and a blood pool contrast agent

RE Clough, T Hussain, S Uribe, GF Greil… - Journal of vascular …, 2011 - Elsevier
BACKGROUND: False lumen thrombosis after aortic dissection is a major predictor of
prognosis. First pass computed tomography (CT) and magnetic resonance (MR) imaging are …

Morphological parameters affecting false lumen thrombosis following type B aortic dissection: a systematic study based on simulations of idealized models

A Jafarinia, GM Melito, TS Müller… - … and Modeling in …, 2023 - Springer
Type B aortic dissection (TBAD) carries a high risk of complications, particularly with a
partially thrombosed or patent false lumen (FL). Therefore, uncovering the risk factors …