In recent years, extensive research in atherosclerosis disease has elucidated many of the biological and molecular mechanisms and pathways involved in plaque development and progression. This has identified dozens of novel targets for diagnosis, therapy, and treatment evaluation. In vivo molecular imaging techniques, and in particular molecular magnetic resonance imaging (MRI), facilitate studies on the etiology of atherosclerosis and the evaluation of emerging therapies. In this chapter, we review contrast agents and (quantitative) MRI pulse sequences and strategies that have been developed for molecular MRI of atherosclerosis. We focus on targeted and nontargeted MRI contrast agents for specific imaging of inflammation (and especially mac...
Atherosclerosis is a well-known disease leading to cardiovascular events, including myocardial infar...
Noninvasive high-resolution magnetic resonance has the potential to image atherosclerotic plaque and...
AbstractThe rapidly evolving field of molecular imaging promises important advances in the diagnosis...
In recent years, extensive research in atherosclerosis disease has elucidated many of the biological...
Recent advances in molecular resonance imaging of atherosclerosis enable to visualize atheroscleroti...
This thesis is aimed at visualization of atherosclerotic plaques with MRI. Noninvasive screening for...
Atherosclerosis is a disease that mainly affects the large arteries and is characterized by accumula...
Atherosclerosis is a chronic inflammatory vascular disease. As it is an inflammation process, many c...
Molecular imaging aims to improve the identification and characterization of pathological processes ...
This thesis describes the use of MRI contrast agents and vessel wall parameters to image different s...
International audienceDespite advances in prevention, risk assessment and treatment, coronary artery...
Atherosclerosis is the major cause of cardiovascular disease, which still has the leading position i...
Abstract—Appreciation of the molecular and cellular processes of atherosclerosis, thrombosis, and va...
Atherosclerosis is an inflammatory disease in which immune mechanisms interact with diverse metaboli...
Molecular imaging is a rapidly emerging field of research, which can be broadly defined as the in vi...
Atherosclerosis is a well-known disease leading to cardiovascular events, including myocardial infar...
Noninvasive high-resolution magnetic resonance has the potential to image atherosclerotic plaque and...
AbstractThe rapidly evolving field of molecular imaging promises important advances in the diagnosis...
In recent years, extensive research in atherosclerosis disease has elucidated many of the biological...
Recent advances in molecular resonance imaging of atherosclerosis enable to visualize atheroscleroti...
This thesis is aimed at visualization of atherosclerotic plaques with MRI. Noninvasive screening for...
Atherosclerosis is a disease that mainly affects the large arteries and is characterized by accumula...
Atherosclerosis is a chronic inflammatory vascular disease. As it is an inflammation process, many c...
Molecular imaging aims to improve the identification and characterization of pathological processes ...
This thesis describes the use of MRI contrast agents and vessel wall parameters to image different s...
International audienceDespite advances in prevention, risk assessment and treatment, coronary artery...
Atherosclerosis is the major cause of cardiovascular disease, which still has the leading position i...
Abstract—Appreciation of the molecular and cellular processes of atherosclerosis, thrombosis, and va...
Atherosclerosis is an inflammatory disease in which immune mechanisms interact with diverse metaboli...
Molecular imaging is a rapidly emerging field of research, which can be broadly defined as the in vi...
Atherosclerosis is a well-known disease leading to cardiovascular events, including myocardial infar...
Noninvasive high-resolution magnetic resonance has the potential to image atherosclerotic plaque and...
AbstractThe rapidly evolving field of molecular imaging promises important advances in the diagnosis...