Thomas Redel
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Explore the profile of Thomas Redel including associated specialties, affiliations and a list of published articles.
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Articles
18
Citations
120
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Recent Articles
1.
Ando J, Otani K, Redel T, Minatsuki S, Kikuchi H, Kodera S, et al.
Heart Vessels
. 2021 Nov;
37(4):549-554.
PMID: 34762151
Fractional flow reserve (FFR) is often used to evaluate the physiological severity of intermediate coronary stenoses, but less-invasive assessment methods are desirable. We evaluated the feasibility of angiographic FFR (angioFFR)...
2.
Nita C, Suzuki T, Itu L, Mihalef V, Takao H, Murayama Y, et al.
Comput Math Methods Med
. 2020 Jul;
2020:5954617.
PMID: 32655681
In recent years, computational fluid dynamics (CFD) has become a valuable tool for investigating hemodynamics in cerebral aneurysms. CFD provides flow-related quantities, which have been shown to have a potential...
3.
Ciusdel C, Turcea A, Puiu A, Itu L, Calmac L, Weiss E, et al.
Comput Med Imaging Graph
. 2020 Jul;
84:101749.
PMID: 32623295
Invasive coronary angiography (ICA) is the gold standard in Coronary Artery Disease (CAD) imaging. Detection of the end-diastolic frame (EDF) and, in general, cardiac phase detection on each temporal frame...
4.
Suzuki T, Takao H, Rapaka S, Fujimura S, Nita C, Uchiyama Y, et al.
Stroke
. 2019 Dec;
51(2):641-643.
PMID: 31813355
Background and Purpose- Therapeutic decision making for small unruptured intracranial aneurysms (<10 mm) is difficult. We aimed to develop a rupture risk model for small intracranial aneurysms in Japanese adults,...
5.
Preuhs A, Berger M, Bauer S, Redel T, Unberath M, Achenbach S, et al.
Int J Comput Assist Radiol Surg
. 2018 Jun;
13(8):1159-1167.
PMID: 29858733
Purpose: In coronary angiography, the condition of myocardial blood supply is assessed by analyzing 2-D X-ray projections of contrasted coronary arteries. This is done using a flexible C-arm system. Due...
6.
Roloff C, Berg P, Redel T, Janiga G, Thevenin D
Annu Int Conf IEEE Eng Med Biol Soc
. 2017 Oct;
2017:1340-1343.
PMID: 29060124
Image-based blood flow simulations can provide detailed hemodynamic information in diseased vessels such as intracranial aneurysms. However, validation is essential to evaluate the accuracy of these computations and further improve...
7.
Berg P, Vos S, Becker M, Serowy S, Redel T, Janiga G, et al.
Annu Int Conf IEEE Eng Med Biol Soc
. 2017 Mar;
2016:3302-3305.
PMID: 28269011
Computational Fluid Dynamics enables the investigation of patient-specific hemodynamics for rupture predictions and treatment support of intracranial aneurysms. However, due to numerous simplifications to decrease the computations effort, clinical applicability...
8.
Suzuki T, Nita C, Rapaka S, Takao H, Mihalef V, Fujimura S, et al.
Annu Int Conf IEEE Eng Med Biol Soc
. 2017 Mar;
2016:2921-2924.
PMID: 28268925
Owing to its clinical importance, there has been a growing body of research on understanding the hemodynamics of cerebral aneurysms. Traditionally, this work has been performed using general-purpose, state-of-the-art commercial...
9.
Boegel M, Gehrisch S, Redel T, Rohkohl C, Hoelter P, Doerfler A, et al.
Int J Comput Assist Radiol Surg
. 2016 Mar;
11(6):1061-9.
PMID: 27017497
Purpose: Hemodynamic simulations are of increasing interest for the assessment of aneurysmal rupture risk and treatment planning. Achievement of accurate simulation results requires the usage of several patient-individual boundary conditions,...
10.
Boegel M, Hoelter P, Redel T, Maier A, Hornegger J, Doerfler A
Annu Int Conf IEEE Eng Med Biol Soc
. 2016 Jan;
2015:2006-9.
PMID: 26736679
Subarachnoid hemorrhage due to a ruptured cerebral aneurysm is still a devastating disease. Planning of endovascular aneurysm therapy is increasingly based on hemodynamic simulations necessitating reliable vessel segmentation and accurate...