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Clinical Feasibility of Free-Breathing Volumetric Comprehensive Tissue Characterization via the Multi-parametric SAVA Technique
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D
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郭
DOI:10.1016/j.jocmr.2026.102774.png)
Abstract
En 中文
Volumetric, one-stop cardiovascular magnetic resonance parametric mapping techniques have been developed and continue to evolve; however, clinical adoption remains limited by insufficient evidence supporting their feasibility in routine practice and the need to demonstrate agreement with established standard techniques.
Keywords:
2D
Two-dimensional
3D
Three-dimensional
AHA
American Heart Association
AM
Amyloidosis
BB-LGE
Bright-Blood Late Gadolinium Enhancement
bSSFP
balanced Steady-State Free Precession
CAD
Coronary Artery Disease
CHD
Congenital Heart Disease
CI
Confidence Interval
CMR
Cardiovascular Magnetic Resonance
CTD
Connective Tissue Disease
DB-LGE
Dark-Blood Late Gadolinium Enhancement
DCM
Dilated Cardiomyopathy
ECG
Electrocardiogram
ECV
Extracellular Volume
FA
Flip Angle
FN
False Negative
FP
False Positive
Gd-DTPA
Gadolinium-Diethylenetriaminepentaacetic acid
GRE
Gradient Echo
HCM
Hypertrophic Cardiomyopathy
HCT
Hematocrit
ICC
Intraclass Correlation Coefficient
IM
Ischemic Cardiomyopathy
LGE
Late Gadolinium Enhancement
LV
Left Ventricle
LVEF
Left Ventricular Ejection Fraction
mGraSE
multi-echo Gradient-Spin-Echo
mSAVA
multi-parametric SAturation-recovery and Variable-flip-Angle acquisition
MOLLI
Modified Look-Locker Inversion recovery
MRI
Magnetic Resonance Imaging
PSIR
Phase-Sensitive Inversion Recovery
ROI
Region of Interest
SASHA
Saturation-recovery Single-shot Acquisition
SD
Standard Deviation
SAX
Short-axis
T2prep
T2 Preparation Pulse
TE
Echo Time of T2prep
TINV/TI
Inversion-recovery Time
TN
True Negative
TP
True Positive
TR
Repetition Time
TSAT
Saturation-recovery Time
VD
Valvular Disease
Myocardium Tissue Characterization
One-stop mSAVA
LGE Synthesis
Parametric Mapping
Clinical study
Journal
IF:
6.1
Papers:
2.3K
Citations:
6.9K
