A new technique to reduce clinical magnetic resonance imaging (MRI) scan time by varying acquisition parameters and sharing k-space data between images, is proposed. To improve data utilization, acquisition of multiple images of different contrast is combined into a single scan, with variable acquisition parameters including repetition time (TR), echo time (TE), and echo train length (ETL). This approach is thus referred to as a "combo acquisition." As a proof of concept, simulations of MRI experiments using spin echo (SE) and fast SE (FSE) sequences were performed based on Bloch equations. Predicted scan time reductions of 25%-50% were achieved for 2-contrast and 3-contrast combo acquisitions. Artifacts caused by nonuniform k-space data we...
We present a method to efficiently separate signal in magnetic resonance imaging (MRI) into a base s...
Dynamic contrast-enhanced (DCE)-MRI is increasingly being used for detection and diagnosis of tumors...
Multi-contrast Magnetic Resonance Imaging (MRI) generates multiple medical images with rich and comp...
A new technique to reduce clinical magnetic resonance imaging (MRI) scan time by varying acquisition...
Abstract—A new technique to reduce clinical magnetic reso-nance imaging (MRI) scan time by varying a...
We propose a technique to reduce scan time for magnetic resonance imaging (MRI) through sharing of k...
Recently a new technique for the combined acquisition of mul-ticontrast images, termed “combo acquis...
Recently a new technique for the combined acquisition of multicontrast images, termed “combo acquisi...
Object: In this work, we present a technique called simultaneous multi-contrast imaging (SMC) to a...
Magnetic resonance imaging (MRI) is an attractive medical imaging modality as it is non-invasive and...
A central limitation of multiple-acquisition magnetic resonance imaging (MRI) is the degradation in ...
Magnetic Resonance Imaging (MRI) is a safe medical imaging modality that can acquire high quality sc...
The dramatic improvement in magnetic resonance imaging (MRI) scan time over the past fifteen years t...
Magnetic resonance imaging (MRI) is a highly exible and non-invasive medical imaging modality bas...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
We present a method to efficiently separate signal in magnetic resonance imaging (MRI) into a base s...
Dynamic contrast-enhanced (DCE)-MRI is increasingly being used for detection and diagnosis of tumors...
Multi-contrast Magnetic Resonance Imaging (MRI) generates multiple medical images with rich and comp...
A new technique to reduce clinical magnetic resonance imaging (MRI) scan time by varying acquisition...
Abstract—A new technique to reduce clinical magnetic reso-nance imaging (MRI) scan time by varying a...
We propose a technique to reduce scan time for magnetic resonance imaging (MRI) through sharing of k...
Recently a new technique for the combined acquisition of mul-ticontrast images, termed “combo acquis...
Recently a new technique for the combined acquisition of multicontrast images, termed “combo acquisi...
Object: In this work, we present a technique called simultaneous multi-contrast imaging (SMC) to a...
Magnetic resonance imaging (MRI) is an attractive medical imaging modality as it is non-invasive and...
A central limitation of multiple-acquisition magnetic resonance imaging (MRI) is the degradation in ...
Magnetic Resonance Imaging (MRI) is a safe medical imaging modality that can acquire high quality sc...
The dramatic improvement in magnetic resonance imaging (MRI) scan time over the past fifteen years t...
Magnetic resonance imaging (MRI) is a highly exible and non-invasive medical imaging modality bas...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
We present a method to efficiently separate signal in magnetic resonance imaging (MRI) into a base s...
Dynamic contrast-enhanced (DCE)-MRI is increasingly being used for detection and diagnosis of tumors...
Multi-contrast Magnetic Resonance Imaging (MRI) generates multiple medical images with rich and comp...