Renal microvascular rarefaction plays a pivotal role in progressive kidney disease. Therefore, modalities to visualize the microcirculation of the kidney will increase our understanding of disease mechanisms and consequently may provide new approaches for evaluating cell-based therapy. At the moment, however, clinical practice is lacking non-invasive, safe, and efficient imaging modalities to monitor renal microvascular changes over time in patients suffering from renal disease. To emphasize the importance, we summarize current knowledge of the renal microcirculation and discussed the involvement in progressive kidney disease. Moreover, an overview of available imaging techniques to uncover renal microvascular morphology, function, and beha...
MRI can provide excellent detail of renal structure and function. Recently, novel MR contrast mechan...
<p>The kidney's major role in filtration depends on its high blood flow, concentrating mechanisms, a...
Characterizing structural and tissue abnormalities of the kidney is fundamental to understanding kid...
Renal microvascular rarefaction plays a pivotal role in progressive kidney disease. Therefore, modal...
Renal microvascular rarefaction plays a pivotal role in progressive kidney disease. Therefore, modal...
The renal microvasculature is emerging as a key player in acute and chronic kidney diseases. Renal m...
Progressive kidney diseases and renal fibrosis are associated with endothelial injury and capillary ...
Progressive kidney diseases and renal fibrosis are associated with endothelial injury and capillary ...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
The renal microvasculature is targeted during aging, sometimes producing chronic kidney disease (CKD...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
Kidney diseases can be caused by a wide range of genetic, hemodynamic, toxic, infectious, and autoim...
MRI can provide excellent detail of renal structure and function. Recently, novel MR contrast mechan...
<p>The kidney's major role in filtration depends on its high blood flow, concentrating mechanisms, a...
Characterizing structural and tissue abnormalities of the kidney is fundamental to understanding kid...
Renal microvascular rarefaction plays a pivotal role in progressive kidney disease. Therefore, modal...
Renal microvascular rarefaction plays a pivotal role in progressive kidney disease. Therefore, modal...
The renal microvasculature is emerging as a key player in acute and chronic kidney diseases. Renal m...
Progressive kidney diseases and renal fibrosis are associated with endothelial injury and capillary ...
Progressive kidney diseases and renal fibrosis are associated with endothelial injury and capillary ...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
The renal microvasculature is targeted during aging, sometimes producing chronic kidney disease (CKD...
In vivo non-invasive molecular imaging techniques have potential to improve clinical research and pr...
Kidney diseases can be caused by a wide range of genetic, hemodynamic, toxic, infectious, and autoim...
MRI can provide excellent detail of renal structure and function. Recently, novel MR contrast mechan...
<p>The kidney's major role in filtration depends on its high blood flow, concentrating mechanisms, a...
Characterizing structural and tissue abnormalities of the kidney is fundamental to understanding kid...