Dominik Paul
Overview
Explore the profile of Dominik Paul including associated specialties, affiliations and a list of published articles.
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Articles
29
Citations
381
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Recent Articles
1.
Marth T, Marth A, Kajdi G, Nickel M, Paul D, Sutter R, et al.
Invest Radiol
. 2025 Feb;
PMID: 40009727
Objective: The 3-dimensional (3D) double echo steady state (DESS) magnetic resonance imaging sequence can image knee cartilage with high, isotropic resolution, particularly at high and ultra-high field strengths. Advanced undersampling...
2.
Glaser C, DAnastasi M, Theisen D, Notohamiprodjo M, Horger W, Paul D, et al.
Semin Musculoskelet Radiol
. 2015 Nov;
19(4):321-7.
PMID: 26583360
Three-dimensional (3D) turbo-spin echo (TSE) sequences have outgrown the stage of mere sequence optimization and by now are clinically applicable. Image blurring and acquisition times have been reduced, and contrast...
3.
Li G, Hennig J, Raithel E, Buchert M, Paul D, Korvink J, et al.
MAGMA
. 2015 Feb;
28(5):459-72.
PMID: 25712732
Objective: In most half-Fourier imaging methods, explicit phase replacement is used. In combination with parallel imaging, or compressed sensing, half-Fourier reconstruction is usually performed in a separate step. The purpose...
4.
Li G, Hennig J, Raithel E, Buchert M, Paul D, Korvink J, et al.
MAGMA
. 2015 Jan;
28(5):413-25.
PMID: 25572444
Object: We aimed to demonstrate that follow-up scans in longitudinal examinations can be significantly accelerated by using images from previous scans as priors for constrained reconstruction. Materials And Methods: In...
5.
Riffel P, Michaely H, Morelli J, Paul D, Kannengiesser S, Schoenberg S, et al.
Acad Radiol
. 2014 Dec;
22(4):423-9.
PMID: 25435184
Rationale And Objectives: The purpose of this study was to evaluate the feasibility and technical quality of a zoomed three-dimensional (3D) turbo spin-echo (TSE) sampling perfection with application optimized contrasts...
6.
Li G, Zaitsev M, Buchert M, Raithel E, Paul D, Korvink J, et al.
MAGMA
. 2014 Nov;
28(4):329-45.
PMID: 25408109
Objective: 3D TSE imaging is very prone to motion artifacts, especially from uncooperative patients, because of the long scan duration. The need to repeat this time-consuming 3D acquisition in the...
7.
Renner N, Kronke G, Rech J, Uder M, Janka R, Lauer L, et al.
Arthritis Rheumatol
. 2014 Sep;
66(12):3283-8.
PMID: 25185889
Objective: To investigate the factors associated with cartilage proteoglycan content in patients with rheumatoid arthritis (RA) Methods: 32 RA patients received high-field 3 Tesla Gadolinium-Enhanced MRI of Cartilage (dGEMRIC) for...
8.
Kloth J, Winterstein M, Akbar M, Meyer E, Paul D, Kauczor H, et al.
Eur J Radiol
. 2014 Aug;
83(10):1843-9.
PMID: 25082477
Purpose: To determine the accuracy and reliability of three-dimensional (3D) T1- and proton density (PD)-weighted turbo spin-echo (TSE) sampling perfection with application-optimized contrasts using different flip-angle evolution (SPACE) compared with...
9.
Morimoto E, Okada T, Kanagaki M, Yamamoto A, Fushimi Y, Matsumoto R, et al.
Epilepsia
. 2013 Oct;
54(12):2174-83.
PMID: 24117006
Purpose: To quantitatively compare the diagnostic capability of double inversion-recovery (DIR) with F-18 fluorodeoxyglucose positron emission tomography (FDG-PET) for detection of seizure focus laterality in temporal lobe epilepsy (TLE). Methods:...
10.
Herz B, Albrecht A, Englbrecht M, Welsch G, Uder M, Renner N, et al.
Ann Rheum Dis
. 2013 Apr;
73(6):1101-6.
PMID: 23625980
Objectives: To investigate the relation between anatomic changes of the synovium, the bone, the bone marrow and the cartilage to biochemical properties of the cartilage in patients with rheumatoid arthritis...