» Articles » PMID: 19629975

Multi-echo Acquisition of MR Angiography and Venography of the Brain at 3 Tesla

Overview
Date 2009 Jul 25
PMID 19629975
Citations 16
Authors
Affiliations
Soon will be listed here.
Abstract

Purpose: To improve the visibility of veins in susceptibility-weighted imaging (SWI) using a multi-gradient echo acquisition.

Materials And Methods: A three-dimensional multi-echo gradient-echo pulse sequence was developed for simultaneous acquisition of MR angiography and multiple volumes of MR venography (MRV) of the brain. The first echo was acquired for MR angiography using the time-of-flight in-flow effect. The subsequent echoes were acquired for SWI-based MRV at different echo times (TEs).

Results: Multiple MRV datasets acquired at different TEs were complementary in depicting the venous vasculature. MRV data acquired at a longer TE had a higher venous contrast and stronger susceptibility weighting, whereas MRV data acquired at a shorter TE had a higher signal-to-noise ratio and less severe off-resonance artifacts. Three-dimensional mapping of local field gradients was calculated and the transverse relaxivity (R(2)) at each voxel was quantified using multi-TE exponential fitting.

Conclusion: Multi-echo acquisition of MR angiography and venography demonstrated improved visibility of venous vasculature especially in regions with severe field inhomogeneity compared with conventional acquisition of SWI and dual-echo acquisition of MR angiography and venography.

Citing Articles

The comorbidity and cognition in multiple sclerosis (CCOMS) neuroimaging protocol: Study rationale, MRI acquisition, and minimal image processing pipelines.

Uddin M, Figley T, Kornelsen J, Mazerolle E, Helmick C, OGrady C Front Neuroimaging. 2023; 1:970385.

PMID: 37555178 PMC: 10406313. DOI: 10.3389/fnimg.2022.970385.


Simultaneous Arterial and Venous Imaging Using 3D Quantitative Parameter Mapping.

Amemiya T, Yokosawa S, Taniguchi Y, Sato R, Soutome Y, Ochi H Magn Reson Med Sci. 2022; 23(1):56-65.

PMID: 36543227 PMC: 10838721. DOI: 10.2463/mrms.mp.2021-0170.


R2* and quantitative susceptibility mapping in deep gray matter of 498 healthy controls from 5 to 90 years.

Treit S, Naji N, Seres P, Rickard J, Stolz E, Wilman A Hum Brain Mapp. 2021; 42(14):4597-4610.

PMID: 34184808 PMC: 8410539. DOI: 10.1002/hbm.25569.


Hematocrit Measurement with R2* and Quantitative Susceptibility Mapping in Postmortem Brain.

Walsh A, Sun H, Emery D, Wilman A AJNR Am J Neuroradiol. 2018; 39(7):1260-1266.

PMID: 29794234 PMC: 7655453. DOI: 10.3174/ajnr.A5677.


A Comparison Study of Single-Echo Susceptibility Weighted Imaging and Combined Multi-Echo Susceptibility Weighted Imaging in Visualizing Asymmetric Medullary Veins in Stroke Patients.

Wang C, Qiu T, Song R, Jiaerken Y, Yang L, Wang S PLoS One. 2016; 11(8):e0159251.

PMID: 27494171 PMC: 4975399. DOI: 10.1371/journal.pone.0159251.