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Jan Bruning

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Articles 18
Citations 72
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Recent Articles
1.
Goubergrits L, Schafstedde M, Cesarovic N, Szengel A, Schmitt B, Wiegand M, et al.
Sci Rep . 2023 Nov; 13(1):20211. PMID: 37980386
To facilitate pre-clinical animal and in-silico clinical trials for implantable pulmonary artery pressure sensors, understanding the respective species pulmonary arteries (PA) anatomy is important. Thus, morphological parameters describing PA of...
2.
Verstraeten S, Hoeijmakers M, Tonino P, Bruning J, Capelli C, van de Vosse F, et al.
Int J Numer Method Biomed Eng . 2023 Nov; 40(1):e3778. PMID: 37961993
In silico trials are a promising way to increase the efficiency of the development, and the time to market of cardiovascular implantable devices. The development of transcatheter aortic valve implantation...
3.
Bruning J, Yevtushenko P, Schlief A, Jochum T, van Gijzen L, Meine S, et al.
Front Cardiovasc Med . 2023 Sep; 10:1193209. PMID: 37745132
To assess whether in-silico models can be used to predict the risk of thrombus formation in pulmonary artery pressure sensors (PAPS), a chronic animal study using pigs was conducted. Computed...
4.
Katz S, Caiazzo A, Moreau B, Wilbrandt U, Bruning J, Goubergrits L, et al.
Int J Numer Method Biomed Eng . 2023 Mar; 39(5):e3695. PMID: 36914373
Numerical simulations of pulsatile blood flow in an aortic coarctation require the use of turbulence modeling. This paper considers three models from the class of large eddy simulation (LES) models...
5.
Schafstedde M, Jarmatz L, Bruning J, Hullebrand M, Nordmeyer S, Harloff A, et al.
Physiol Meas . 2023 Feb; 44(3). PMID: 36735968
. This study assesses age-related differences of thoracic aorta blood flow profiles and provides age- and sex-specific reference values using 4D flow cardiovascular magnetic resonance (CMR) data.. 126 volunteers (age...
6.
Bruning J, Kramer P, Goubergrits L, Schulz A, Murin P, Solowjowa N, et al.
Front Cardiovasc Med . 2022 Dec; 9:1024053. PMID: 36531701
Background: Double outlet right ventricle (DORV) describes a group of congenital heart defects where pulmonary artery and aorta originate completely or predominantly from the right ventricle. The individual anatomy of...
7.
Hellmeier F, Bruning J, Berg P, Saalfeld S, Spuler A, Sandalcioglu I, et al.
BMJ Open . 2022 Nov; 12(11):e063051. PMID: 36351732
Objectives: Assessing the risk associated with unruptured intracranial aneurysms (IAs) is essential in clinical decision making. Several geometric risk parameters have been proposed for this purpose. However, performance of these...
8.
Schafstedde M, Yevtushenko P, Nordmeyer S, Kramer P, Schleiger A, Solowjowa N, et al.
Front Cardiovasc Med . 2022 Aug; 9:898701. PMID: 35990961
Background: Uneven hepatic venous blood flow distribution (HFD) to the pulmonary arteries is hypothesized to be responsible for the development of intrapulmonary arteriovenous malformations (PAVM) in patients with univentricular physiology....
9.
Schmidt N, Behrbohm H, Goubergrits L, Hildebrandt T, Bruning J
Int J Comput Assist Radiol Surg . 2022 Jul; 17(9):1519-1529. PMID: 35821562
Purpose: Computational fluid dynamics (CFD)-based calculation of intranasal airflow became an important method in rhinologic research. Current evidence shows weak to moderate correlation as well as a systematic underprediction of...
10.
Franke B, Bruning J, Yevtushenko P, Dreger H, Brand A, Juri B, et al.
Front Cardiovasc Med . 2021 Sep; 8:706628. PMID: 34568450
In patients with aortic stenosis, computed tomography (CT) provides important information about cardiovascular anatomy for treatment planning but is limited in determining relevant hemodynamic parameters such as the transvalvular pressure...