Javascript must be enabled to continue!
Slice encoding for the reduction of outflow signal artifacts in cine balanced SSFP imaging
View through CrossRef
PurposeStandard balanced SSFP (bSSFP) cine MRI often suffers from blood outflow artifacts. We propose a method that spatially encodes these outflowing spins to reduce their effects in the intended slice.MethodsBloch simulations were performed to characterize through‐plane flow and to investigate how the use of phase encoding along the slice select’s direction (“slice encoding”) could alleviate its issues. Phantom scans and in vivo cines were acquired on a 3T system, comparing the standard 2D acquisition to the proposed slice‐encoding method. Nineteen healthy volunteers were recruited for short‐axis and horizontal long‐axis oriented scans. An expert radiologist evaluated each slice‐encoded/standard cine pairs in a rank comparison test and graded their quality on a 1‐5 scale. The grades were used for a nonparametric paired evaluation for independent samples with a null hypothesis that there was no statistical difference between the two quality‐grade distributions for α = 0.05 significance.ResultsBloch simulation results demonstrated this technique’s feasibility, showing a fully resolved slice profile given a sufficient number of slice encodes. These results were confirmed with the phantom experiments. Each in vivo slice‐encoded cine had a higher quality than its corresponding standard acquisition. The nonparametric paired evaluation came to 0.01 significance, encouraging us to reject the null hypothesis and conclude that slice‐encoding effectively works in reducing outflow effects.ConclusionThe slice‐encoding balanced SSFP technique is helpful in mitigating outflow effects and is achievable within a single breath hold, being a useful alternative for cases in which the flow artifacts are significant.
Title: Slice encoding for the reduction of outflow signal artifacts in cine balanced SSFP imaging
Description:
PurposeStandard balanced SSFP (bSSFP) cine MRI often suffers from blood outflow artifacts.
We propose a method that spatially encodes these outflowing spins to reduce their effects in the intended slice.
MethodsBloch simulations were performed to characterize through‐plane flow and to investigate how the use of phase encoding along the slice select’s direction (“slice encoding”) could alleviate its issues.
Phantom scans and in vivo cines were acquired on a 3T system, comparing the standard 2D acquisition to the proposed slice‐encoding method.
Nineteen healthy volunteers were recruited for short‐axis and horizontal long‐axis oriented scans.
An expert radiologist evaluated each slice‐encoded/standard cine pairs in a rank comparison test and graded their quality on a 1‐5 scale.
The grades were used for a nonparametric paired evaluation for independent samples with a null hypothesis that there was no statistical difference between the two quality‐grade distributions for α = 0.
05 significance.
ResultsBloch simulation results demonstrated this technique’s feasibility, showing a fully resolved slice profile given a sufficient number of slice encodes.
These results were confirmed with the phantom experiments.
Each in vivo slice‐encoded cine had a higher quality than its corresponding standard acquisition.
The nonparametric paired evaluation came to 0.
01 significance, encouraging us to reject the null hypothesis and conclude that slice‐encoding effectively works in reducing outflow effects.
ConclusionThe slice‐encoding balanced SSFP technique is helpful in mitigating outflow effects and is achievable within a single breath hold, being a useful alternative for cases in which the flow artifacts are significant.
Related Results
Multishot EPI‐SSFP in the heart
Multishot EPI‐SSFP in the heart
Abstract
Refocused steady‐state free precession (SSFP), or fast imaging with steady precession (FISP or TrueFISP), has recently proven valuable for cardiac imagin...
Signal‐to‐noise ratio behavior of steady‐state free precession
Signal‐to‐noise ratio behavior of steady‐state free precession
AbstractSteady‐state free precession (SSFP) is a rapid gradient‐echo imaging technique that has recently gained popularity and is used in a variety of applications, including cardi...
SU‐FF‐I‐89: Effects of EPI Slice Angle, Slice Thickness and Phase Encoding Direction On FMRI Sensitivity in Areas with Susceptibility Artifact
SU‐FF‐I‐89: Effects of EPI Slice Angle, Slice Thickness and Phase Encoding Direction On FMRI Sensitivity in Areas with Susceptibility Artifact
Purpose: A key problem of using EPI for BOLD fMRI is the field inhomogeneities near air/tissue interfaces, or the susceptibility artifact. Therefore, fMRI studies in brain areas su...
Myocardial tagging with SSFP
Myocardial tagging with SSFP
AbstractThis work presents the first implementation of myocardial tagging with refocused steady‐state free precession (SSFP) and magnetization preparation. The combination of myoca...
3D cine-magnetic resonance imaging using spatial and temporal implicit neural representation learning (STINR-MR)
3D cine-magnetic resonance imaging using spatial and temporal implicit neural representation learning (STINR-MR)
Abstract
Objective
. 3D cine-magnetic resonance imaging (cine-MRI) can capture images of the human body volume with high ...
Incorporating multislice imaging into x‐ray CT polymer gel dosimetry
Incorporating multislice imaging into x‐ray CT polymer gel dosimetry
Purpose:To evaluate multislice computed tomography (CT) scanning for fast and reliable readout of radiation therapy (RT) dose distributions using CT polymer gel dosimetry (PGD) and...
Anatomical Information of Slice Thickness Variation in Ischemic Stroke with CT Scan
Anatomical Information of Slice Thickness Variation in Ischemic Stroke with CT Scan
Ischemic stroke causes partial or complete blockage of blood flow to the brain. Signs of ischemic stroke can be observed on CT scans of the head, namely Hyperdense Artery Sign (HAS...
The Bronze Artifacts of Tall Jalul, Jordan
The Bronze Artifacts of Tall Jalul, Jordan
Background It is quite common at excavation sites throughout the Near East to uncover the remains of metallic artifacts, though the practice of investigating these objects has flu...

