Feasibility of angiographic imaging using fast 3D Magnetic Resonance Spin TomogrAphy in Time-domain (MR-STAT)

Abstract Objective To investigate how angiographic information can be obtained from proton density (PD) maps reconstructed with a fast 3D Magnetic Resonance Spin TomogrAphy in Time-domain (MR-STAT) protocol, focusing on intracranial vessels and aneurysms in a clinically relevant population. Materials and methods This proof-of-concept study consisted of two experiments. First, a healthy volunteer underwent MR-STAT with selective and non-selective excitation to investigate the origin of elevated effective proton density in arteries. Second, ten patients with intracranial aneurysms underwent 3D MR-STAT and time-of-flight MR angiography (TOF MRA). Two neuroradiologists independently assessed vessel visibility, image quality, and aneurysm size. Intraclass correlation coefficients (ICC) were computed for aneurysm size measurements. Results Selective excitation amplified inflow effects and yielded increased artery-tissue contrast in PD maps. Major intracranial arteries were visible in all clinical MR-STAT angiographic datasets. Nine out of ten MR-STAT angiographies were rated as at least diagnostically acceptable. Aneurysm measurements showed strong agreement between conventional and MR-STAT angiographic modalities (ICC=0.86/ICC=0.71) and high inter-rater reliability (ICC=0.90/ICC=0.92). Discussion MR-STAT PD maps enable angiographic visualization as an intrinsic component of a single fast quantitative acquisition, demonstrating technical feasibility for vessel depiction. Future work should focus on optimizing MR-STAT acquisition strategies to improve vessel conspicuity and broader clinical validation.

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Publication Details

Journal
Magnetic Resonance Materials in Physics Biology and Medicine
Published
2026-10-06
DOI
https://doi.org/10.1007/s10334-026-01425-9
Primary Topic
Advanced MRI Techniques and Applications
Type
article
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article

Feasibility of angiographic imaging using fast 3D Magnetic Resonance Spin TomogrAphy in Time-domain (MR-STAT)

Jan Willem Dankbaar, Stefano Mandija, Alessandro Sbrizzi, Ynte M. Ruigrok et al.
Magnetic Resonance Materials in Physics Biology and Medicine
Advanced MRI Techniques and Applications
article

Feasibility of angiographic imaging using fast 3D Magnetic Resonance Spin TomogrAphy in Time-domain (MR-STAT)

Jan Willem Dankbaar, Stefano Mandija, Alessandro Sbrizzi, Ynte M. Ruigrok, Oscar van der Heide, Irene van der Schaaf, Edwin Versteeg, Martin Bastiaan Schilder, Fei Xu, Mervyn Driek Ingmar Vergouwen, Cornelis Antonius Theodorus van den Berg
article en

Abstract

Abstract Objective To investigate how angiographic information can be obtained from proton density (PD) maps reconstructed with a fast 3D Magnetic Resonance Spin TomogrAphy in Time-domain (MR-STAT) protocol, focusing on intracranial vessels and aneurysms in a clinically relevant population. Materials and methods This proof-of-concept study consisted of two experiments. First, a healthy volunteer underwent MR-STAT with selective and non-selective excitation to investigate the origin of elevated effective proton density in arteries. Second, ten patients with intracranial aneurysms underwent 3D MR-STAT and time-of-flight MR angiography (TOF MRA). Two neuroradiologists independently assessed vessel visibility, image quality, and aneurysm size. Intraclass correlation coefficients (ICC) were computed for aneurysm size measurements. Results Selective excitation amplified inflow effects and yielded increased artery-tissue contrast in PD maps. Major intracranial arteries were visible in all clinical MR-STAT angiographic datasets. Nine out of ten MR-STAT angiographies were rated as at least diagnostically acceptable. Aneurysm measurements showed strong agreement between conventional and MR-STAT angiographic modalities (ICC=0.86/ICC=0.71) and high inter-rater reliability (ICC=0.90/ICC=0.92). Discussion MR-STAT PD maps enable angiographic visualization as an intrinsic component of a single fast quantitative acquisition, demonstrating technical feasibility for vessel depiction. Future work should focus on optimizing MR-STAT acquisition strategies to improve vessel conspicuity and broader clinical validation.

Magnetic Resonance Materials in Physics Biology and Medicine
Utrecht University (NL), Heidelberg University (DE), University Hospital Heidelberg (DE), University Medical Center Utrecht (NL)
Openalex Percentile: Top 12%
Advanced MRI Techniques and Applications
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