Florian Wiesinger
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Explore the profile of Florian Wiesinger including associated specialties, affiliations and a list of published articles.
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64
Citations
1506
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Recent Articles
1.
Riemer F, Rusaas M, Sandoy L, Wiesinger F, Solana A, Ersland L, et al.
Comput Biol Med
. 2025 Mar;
189:109920.
PMID: 40037172
Radial based non-Cartesian sequences may be used for silent functional MRI examinations particularly in settings where scanner noise could pose issues. However, to achieve reasonable temporal resolution, under-sampled 3D radial...
2.
Lauwers I, Capala M, Kaushik S, Rusko L, Cozzini C, Kleijnen J, et al.
Radiother Oncol
. 2025 Jan;
205:110762.
PMID: 39889967
Background And Purpose: MRI-based synthetic CTs (synCTs) show promise to replace planning CT scans in various anatomical regions. However, the head-and-neck region remains challenging because of patient-specific air, bone and...
3.
Carretero-Gomez L, Fung M, Wiesinger F, Carl M, McKinnon G, de Arcos J, et al.
Skeletal Radiol
. 2024 Nov;
PMID: 39572485
Purpose: To evaluate image quality and lesion conspicuity of zero echo time (ZTE) MRI reconstructed with deep learning (DL)-based algorithm versus conventional reconstruction and to assess DL ZTE performance against...
4.
Huo Z, de Arcos J, Wiesinger F, Kaggie J, Graves M
Magn Reson Med
. 2024 Nov;
93(3):1149-1162.
PMID: 39497463
Purpose: A new referenceless low-rank reconstruction technique has been introduced to address the issue of missing samples within the Zero Echo Time (ZTE) dead-time gap. Methods: The proposed method reformulates...
5.
Naysmith L, ODaly O, Solana A, Wiesinger F, Hill S, Williams S, et al.
Front Hum Neurosci
. 2024 Aug;
18:1436156.
PMID: 39188409
Introduction: Startle habituation and prepulse inhibition (PPI) are distinct measures of different sensory information processes, yet both result in the attenuation of the startle reflex. Identifying startle habituation and PPI...
6.
Getzmann J, Deininger-Czermak E, Melissanidis S, Ensle F, Kaushik S, Wiesinger F, et al.
Insights Imaging
. 2024 Aug;
15(1):202.
PMID: 39120752
Objectives: To generate pseudo-CT (pCT) images of the pelvis from zero echo time (ZTE) MR sequences and compare them to conventional CT. Methods: Ninety-one patients were prospectively scanned with CT...
7.
Wyatt J, Kaushik S, Cozzini C, Pearson R, Petrides G, Wiesinger F, et al.
EJNMMI Phys
. 2024 Jan;
11(1):10.
PMID: 38282050
Background: Positron emission tomography-magnetic resonance (PET-MR) attenuation correction is challenging because the MR signal does not represent tissue density and conventional MR sequences cannot image bone. A novel zero echo...
8.
McGee K, Cao M, Das I, Yu V, Witte R, Kishan A, et al.
J Magn Reson Imaging
. 2024 Jan;
60(5):1786-1805.
PMID: 38265188
Ever since its introduction as a diagnostic imaging tool the potential of magnetic resonance imaging (MRI) in radiation therapy (RT) treatment simulation and planning has been recognized. Recent technical advances...
9.
Leynes A, Ahn S, Wangerin K, Kaushik S, Wiesinger F, Hope T, et al.
IEEE Trans Radiat Plasma Med Sci
. 2024 Jan;
6(6):678-689.
PMID: 38223528
A major remaining challenge for magnetic resonance-based attenuation correction methods (MRAC) is their susceptibility to sources of magnetic resonance imaging (MRI) artifacts (e.g., implants and motion) and uncertainties due to...
10.
Kaushik S, Bylund M, Cozzini C, Shanbhag D, Petit S, Wyatt J, et al.
Phys Med Biol
. 2023 Aug;
68(19).
PMID: 37567235
. In MR-only clinical workflow, replacing CT with MR image is of advantage for workflow efficiency and reduces radiation to the patient. An important step required to eliminate CT scan...