Filip Szczepankiewicz
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Associate Senior Lecturer
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About
Filip Szczepankiewicz is an Associate Senior Lecturer at Lund University, Sweden. His research focuses on advanced imaging techniques including diffusion MRI, cardiac imaging, and brain microstructural analysis. Recent publications highlight his work on isotropic ADC-fMRI, cardiac diffusion kurtosis imaging, and strategies for outlier detection in diffusion tensor imaging. Through innovative methodologies, he aims to enhance our understanding of brain and heart activity in vivo.
Recent Grants
Grant: Open
Diagnosis and radiotherapy monitoring in prostate cancer by multidimensional MRI
Open Date: 2022-07-01
Close Date: 2028-06-01
Grant: Close
MRI for non-invasive detection and diagnosis of prostate cancer
Open Date: 2022-01-01
Close Date: 2026-01-01
Grant: Close
Multidimensional MRI for non-invasive detection and diagnosis of prostate cancer
Open Date: 2021-04-01
Close Date: 2021-12-01
Articles (20)
In vivo diffusion MRI of the human heart using a 300 mT/m gradient system
Purpose This work reports for the first time on the implementation and application of cardiac diffusion‐weighted MRI on a Connectom MR scanner with a maximum gradient strength of 300 mT/m. It evaluates the benefits of the increased gradient performance for the investigation of the myocardial microstructure. Methods Cardiac diffusion‐weighted imaging (DWI) experiments were performed on 10 healthy volunteers using a spin‐echo sequence with up to second‐ and third‐order motion compensation ( and ) and , and 1000 (twice the commonly used on clinical scanners). Mean diffusivity (MD), fractional anisotropy (FA), helix angle (HA), and secondary eigenvector angle (E2A) were calculated for b = [100, 450] and b = [100, 1000] for both and . Results The MD values with are slightly higher than with with for and for . A reduction in MD is observed by increasing the from 450 to 1000 ( for and for ). The difference between FA, E2A, and HA was not significant in different schemes (). Conclusion This work demonstrates cardiac DWI in vivo with higher b ‐value and higher order of motion compensated diffusion gradient waveforms than is commonly used. Increasing the motion compensation order from to and the maximum b ‐value from 450 to 1000 affected the MD values but FA and the angular metrics (HA and E2A) remained unchanged. Our work paves the way for cardiac DWI on the next‐generation MR scanners with high‐performance gradient systems.
Year:
2024
Collaborators (13)
Jürgen E. Schneider
-
Jan Sijbers
Prof. Dr. at University of Antwerp
University of Antwerp
Simon Warfield
Professor of Radiology
Boston Children's Hospital
Arthur Chakwizira
Lund University
Irvin Teh
University of Leeds
MATTHEW BUDDE
Associate Professor
Medical College of Wisconsin
Ileana Jelescu
Assistant Professor
University of Lausanne
Ben Jeurissen
University of Antwerp
Crister Ceberg
Lund University
Markus Nilsson
-
Eun Cho
Assistant Professor
Gyeongsang National University College of Medicine
Md Nasir Uddin
Assistant Professor
University of Rochester
Hye Jin Baek
Professor
Gyeongsang National University Changwon Hospital, Gyeongsang National University College of Medicine

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