International audienceWe demonstrate a method for the fast in vivo quantification of small volumes, down to 25 µL, using low-field magnetic resonance imaging (MRI) coils. The coils were designed so as to maximize the signal-to-noise ratio (SNR) in the images. For this we developed an analytical model for describing the variations of the SNR with coil design and with size/shape suited to the object under observation. Based on the conclusions drawn from the model, the coil parameters were chosen in order to reach an SNR close to the maximum. For the validation of the model, coils were finally characterized in terms of quality factor using saline phantoms. The coil design procedure is illustrated here with two examples: first, the quantificati...
Due to the character of the original source materials and the nature of batch digitization, quality ...
The purpose of this work was to develop and investigate a radiofrequency (RF) coil to perform image ...
Magnetic resonance imaging is a non-invasive imaging modality that is used to produce detailed image...
International audienceWe demonstrate a method for the fast in vivo quantification of small volumes, ...
L'imagerie par résonance magnétique (IRM) appliquée au domaine vétérinaire exploite des systèmes à b...
A review of the theory, technology, and practice of RF coils for small-animal MRI is presented that ...
In this paper we present the spatial resolution enhancement and noise reduction level achieved with ...
Optimizing Radio-Frequency Coils for Low Cost Magnetic Resonance Magnetic Resonance Imaging (MRI) is...
Magnetic resonance imaging (MRI) is a very powerful, non-ionizing, non-invasive clinical and researc...
Low-field magnetic resonance imaging (MRI) has become increasingly popular due to cost reduction, ar...
Magnetic resonance imaging (MRI) is performed with a very large instrument that allows the patient t...
Applications of low-field magnetic resonance imaging (MRI) systems (<0.3 T) are limited due to the s...
Abstract Introduction: Magnetic Resonance Spectroscopy (MRS) is a ...
Small animal modeling is an exciting research field where human pathogenic frameworks can be replica...
A surface radio frequency coil was developed for small animal image acquisition in a pre-clinical ma...
Due to the character of the original source materials and the nature of batch digitization, quality ...
The purpose of this work was to develop and investigate a radiofrequency (RF) coil to perform image ...
Magnetic resonance imaging is a non-invasive imaging modality that is used to produce detailed image...
International audienceWe demonstrate a method for the fast in vivo quantification of small volumes, ...
L'imagerie par résonance magnétique (IRM) appliquée au domaine vétérinaire exploite des systèmes à b...
A review of the theory, technology, and practice of RF coils for small-animal MRI is presented that ...
In this paper we present the spatial resolution enhancement and noise reduction level achieved with ...
Optimizing Radio-Frequency Coils for Low Cost Magnetic Resonance Magnetic Resonance Imaging (MRI) is...
Magnetic resonance imaging (MRI) is a very powerful, non-ionizing, non-invasive clinical and researc...
Low-field magnetic resonance imaging (MRI) has become increasingly popular due to cost reduction, ar...
Magnetic resonance imaging (MRI) is performed with a very large instrument that allows the patient t...
Applications of low-field magnetic resonance imaging (MRI) systems (<0.3 T) are limited due to the s...
Abstract Introduction: Magnetic Resonance Spectroscopy (MRS) is a ...
Small animal modeling is an exciting research field where human pathogenic frameworks can be replica...
A surface radio frequency coil was developed for small animal image acquisition in a pre-clinical ma...
Due to the character of the original source materials and the nature of batch digitization, quality ...
The purpose of this work was to develop and investigate a radiofrequency (RF) coil to perform image ...
Magnetic resonance imaging is a non-invasive imaging modality that is used to produce detailed image...