Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular prevention and therapy based on a refined mechanistic pervasion of atherosclerosis as the underlying pathology could limit the effect of vascular disease in aging societies. During the past decades, microscopy has contributed greatly to a better understanding of vascular physiology and pathology by allowing imaging of living specimen with subcellular resolution and high specificity. An important advance has been accomplished through the application of multiphoton microscopy in the vascular domain, a technological development that enabled multidimensional and dynamic imaging deep into the cellular architecture of intact tissue under physiological...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
The application of optical nanoparticles in cardiovascular research is increasing because of the hig...
The application of optical nanoparticles in cardiovascular research is increasing because of the hig...
The application of optical nanoparticles in cardiovascular research is increasing because of the hig...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Abstract—Imaging approaches that visualize molecular targets rather than anatomic structures aim to ...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
Cardiovascular disease is the leading cause of death and morbidity worldwide. Improving vascular pre...
The application of optical nanoparticles in cardiovascular research is increasing because of the hig...
The application of optical nanoparticles in cardiovascular research is increasing because of the hig...
The application of optical nanoparticles in cardiovascular research is increasing because of the hig...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Abstract—Imaging approaches that visualize molecular targets rather than anatomic structures aim to ...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...
Multiphoton laser scanning microscopy has proven profound value for ex vivo 3D histology and in vivo...