Michael C Barbour
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Explore the profile of Michael C Barbour including associated specialties, affiliations and a list of published articles.
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13
Citations
71
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Recent Articles
1.
Zhen L, Quiroga E, Creason S, Chen N, Sapre T, Snyder J, et al.
Biomaterials
. 2025 Mar;
320:123206.
PMID: 40058247
Millions of synthetic vascular grafts (sVG) are needed annually to address vascular diseases (a leading cause of death in humans) and kidney failure (as vascular access). However, in 70+ years...
2.
Straccia A, Barbour M, Chassagne F, Bass D, Barros G, Leotta D, et al.
Ann Biomed Eng
. 2024 May;
52(9):2417-2439.
PMID: 38758460
The Circle of Willis (CoW) is a ring-like network of blood vessels that perfuses the brain. Flow in the collateral pathways that connect major arterial inputs in the CoW change...
3.
Straccia A, Chassagne F, Barbour M, Beckman J, Li S, Mahr C, et al.
Ann Biomed Eng
. 2024 Mar;
52(6):1763-1778.
PMID: 38517620
Patients with advanced heart failure are implanted with a left ventricular assist device (LVAD) as a bridge-to-transplantation or destination therapy. Despite advances in pump design, the risk of stroke remains...
4.
Barbour M, Amin S, Friedman S, Perez F, Bly R, Johnson K, et al.
Otolaryngol Head Neck Surg
. 2024 Jan;
170(4):1195-1199.
PMID: 38168480
Endoscopy is the gold standard for characterizing pediatric airway disorders, however, it is limited for quantitative analysis due to lack of three-dimensional (3D) vision and poor stereotactic depth perception. We...
5.
Fillingham P, Belur N, Sweem R, Barbour M, Marsh L, Aliseda A, et al.
Med Phys
. 2023 Dec;
51(2):1499-1508.
PMID: 38150511
Background: Computational fluid dynamics (CFD) simulations are a powerful tool for studying cerebral aneurysms, capable of evaluating hemodynamics in a way that is infeasible with imaging alone. However, the difficulty...
6.
Fillingham P, Romero Bhathal J, Marsh L, Barbour M, Kurt M, Ionita C, et al.
J Biomech
. 2023 Aug;
157:111733.
PMID: 37527606
Cerebral aneurysms are a serious clinical challenge, with ∼half resulting in death or disability. Treatment via endovascular coiling significantly reduces the chances of rupture, but the techniquehas failure rates of...
7.
Barbour M, Chassagne F, Chivukula V, Machicoane N, Kim L, Levitt M, et al.
J Fluid Mech
. 2021 Oct;
915.
PMID: 34658417
The flow in a spherical cavity on a curved round pipe is a canonical flow that describes well the flow inside a sidewall aneurysm on an intracranial artery. Intracranial aneurysms...
8.
Chassagne F, Barbour M, Chivukula V, Machicoane N, Kim L, Levitt M, et al.
J Fluid Mech
. 2021 May;
915.
PMID: 34024939
Flow in side-wall cerebral aneurysms can be ideally modelled as the combination of flow over a spherical cavity and flow in a curved circular pipe, two canonical flows. Flow in...
9.
Chivukula V, Marsh L, Chassagne F, Barbour M, Kelly C, Levy S, et al.
J Biomech Eng
. 2021 Mar;
143(7).
PMID: 33665669
As frequency of endovascular treatments for intracranial aneurysms increases, there is a growing need to understand the mechanisms for coil embolization failure. Computational fluid dynamics (CFD) modeling often simplifies modeling...
10.
Marsh L, Barbour M, Chivukula V, Chassagne F, Kelly C, Levy S, et al.
Ann Biomed Eng
. 2019 Sep;
48(1):490-501.
PMID: 31549329
Flow-diverting stents (FDS) are used to treat cerebral aneurysms. They promote the formation of a stable thrombus within the aneurysmal sac and, if successful, isolate the aneurysmal dome from mechanical...