International audienceReal-time cardiac MRI appears as a promising technique to evaluate the mechanical function of the heart. However, ultra-fast MRI acquisitions come with an important signal-to-noise ratio (SNR) penalty, which drastically reduces the image quality. Hence, a real-time denoising approach would be desirable for SNR amelioration. In the clinical context of cardiac dysfunction assessment, long acquisitions are required and for most patients the acquisition takes place with free breathing. Hence, it is necessary to compensate respiratory motion in real-time. In this article, a real-time and interactive method for sequential registration and denoising of real-time MR cardiac images is presented. The method has been experimented...
Cardiac magnetic resonance imaging (MRI) is a promising modality for guiding inter- ventions within ...
One of the challenges of cardiac MR imaging is the compensation of respiratory motion, which causes ...
This abstract presents a novel method for registration of cardiac perfusion MRI sequences. By perfor...
Real-time cardiac MRI appears as a promising technique to evaluate the mechanical function of the he...
Real-time imaging may be clinically important in patients with congestive heart failure, arrhythmias...
Real-time interactive MRI is becoming the method of choice for many cardiac applications. One curren...
Cardiac structure, function and flow are most commonly studied by ultrasound, X-ray and magnetic res...
Abstract Background Functional assessments of the heart by dynamic cardiovascular magnetic resonance...
Cardiac structure, function and flow are most commonly studied by ultrasound, X-ray and magnetic res...
We investigated a novel sequence with radial k-space sampling, gridding and sliding window reconstru...
International audienceTo develop an efficient motion-compensated reconstruction technique for free-b...
In cardiac MRI, ECG triggering is used or patients are required to hold their breath, to alleviate m...
In this work an improved self-calibrating radial GRAPPA algorithm for real-time cardiac MRI is prese...
Motion in cardiac Magnetic Resonance Imaging (MRI) is a major challenge, as it results in artifacts ...
Cardiac MRI is regarded as gold-standard for analysis of left ventricular function. Commonly used CI...
Cardiac magnetic resonance imaging (MRI) is a promising modality for guiding inter- ventions within ...
One of the challenges of cardiac MR imaging is the compensation of respiratory motion, which causes ...
This abstract presents a novel method for registration of cardiac perfusion MRI sequences. By perfor...
Real-time cardiac MRI appears as a promising technique to evaluate the mechanical function of the he...
Real-time imaging may be clinically important in patients with congestive heart failure, arrhythmias...
Real-time interactive MRI is becoming the method of choice for many cardiac applications. One curren...
Cardiac structure, function and flow are most commonly studied by ultrasound, X-ray and magnetic res...
Abstract Background Functional assessments of the heart by dynamic cardiovascular magnetic resonance...
Cardiac structure, function and flow are most commonly studied by ultrasound, X-ray and magnetic res...
We investigated a novel sequence with radial k-space sampling, gridding and sliding window reconstru...
International audienceTo develop an efficient motion-compensated reconstruction technique for free-b...
In cardiac MRI, ECG triggering is used or patients are required to hold their breath, to alleviate m...
In this work an improved self-calibrating radial GRAPPA algorithm for real-time cardiac MRI is prese...
Motion in cardiac Magnetic Resonance Imaging (MRI) is a major challenge, as it results in artifacts ...
Cardiac MRI is regarded as gold-standard for analysis of left ventricular function. Commonly used CI...
Cardiac magnetic resonance imaging (MRI) is a promising modality for guiding inter- ventions within ...
One of the challenges of cardiac MR imaging is the compensation of respiratory motion, which causes ...
This abstract presents a novel method for registration of cardiac perfusion MRI sequences. By perfor...