Purpose: To develop a novel technique for voxel‐based mapping of lung microstructural parameters using hyperpolarized 129Xe dissolved‐phase MR imaging during saturation recovery. Methods: A pulse sequence using a highly undersampled stack‐of‐stars trajectory was developed, and low‐rank plus sparse matrix decomposition was employed for reconstruction of regional 129Xe uptake dynamics into lung tissue. In 4 healthy volunteers and 9 patients with chronic obstructive pulmonary disease, the technique was tested and compared to chemical shift saturation recovery spectroscopy in patients. Reproducibility of 129Xe gas uptake imaging was assessed by computing coefficients of variation, and results were compared with other modalities. Results: Numeri...
Purpose To perform magnetic resonance imaging (MRI), human lung imaging, and quantification of the g...
Background Hyperpolarised 129-xenon (129Xe) magnetic resonance imaging (MRI) shows promise in monito...
The main objective of this project was to develop and implement techniques for high-resolution quant...
Purpose: To evaluate the reproducibility and regional variation of parameters obtained from localize...
Purpose: To develop and test a method to noninvasively assess the functional lung microstructure. Ma...
Purpose: To develop and test a method to noninvasively assess the functional lung microstructure. Ma...
Hyperpolarized (HP) 129Xe Magnetic Resonance Imaging (MRI) of the lungs allows for the visualization...
Both the development of accurate models of lung function and their quantitative validation can be si...
Purpose To evaluate the reproducibility of indices of lung microstructure and function derived from...
<p>Hyperpolarized (HP) 129Xe MRI has emerged as a viable tool for evaluating lung function without i...
Purpose To develop and optimize a rapid dynamic hyperpolarizedandnbsp;129Xe ventilation (DXeV) MRI p...
Chronic obstructive pulmonary disease (COPD) describes a range of lung conditions including emphysem...
Lung diseases such as chronic obstructive pulmonary disease and asthma affect mil- lions of people w...
Purpose Chronic obstructive pulmonary disease (COPD) is a leading cause of mortality worldwide. The ...
The microstructure of the lung is complex, containing many branching airways and alveolar sacs for o...
Purpose To perform magnetic resonance imaging (MRI), human lung imaging, and quantification of the g...
Background Hyperpolarised 129-xenon (129Xe) magnetic resonance imaging (MRI) shows promise in monito...
The main objective of this project was to develop and implement techniques for high-resolution quant...
Purpose: To evaluate the reproducibility and regional variation of parameters obtained from localize...
Purpose: To develop and test a method to noninvasively assess the functional lung microstructure. Ma...
Purpose: To develop and test a method to noninvasively assess the functional lung microstructure. Ma...
Hyperpolarized (HP) 129Xe Magnetic Resonance Imaging (MRI) of the lungs allows for the visualization...
Both the development of accurate models of lung function and their quantitative validation can be si...
Purpose To evaluate the reproducibility of indices of lung microstructure and function derived from...
<p>Hyperpolarized (HP) 129Xe MRI has emerged as a viable tool for evaluating lung function without i...
Purpose To develop and optimize a rapid dynamic hyperpolarizedandnbsp;129Xe ventilation (DXeV) MRI p...
Chronic obstructive pulmonary disease (COPD) describes a range of lung conditions including emphysem...
Lung diseases such as chronic obstructive pulmonary disease and asthma affect mil- lions of people w...
Purpose Chronic obstructive pulmonary disease (COPD) is a leading cause of mortality worldwide. The ...
The microstructure of the lung is complex, containing many branching airways and alveolar sacs for o...
Purpose To perform magnetic resonance imaging (MRI), human lung imaging, and quantification of the g...
Background Hyperpolarised 129-xenon (129Xe) magnetic resonance imaging (MRI) shows promise in monito...
The main objective of this project was to develop and implement techniques for high-resolution quant...