<p>The catheter tip (arrow head) is located within the jugular vein of the mouse. Contrast agent flows from the patent jugular vein into the right atrium (arrow) (A). From there it fills the lungs (B) and the aortic arch (AA) including the supraaortic arterial vessels (C). Contrast injection via the implanted mini-port one week later shows occlusion of the jugular vein (D). Instead, the contrast agent flowed (indicated by dotted arrows) via a “ladder-like” venous collateral network (E) with some delay and reduced contrast intensity into the right atrium (arrow) (F).</p
<p>(a,b) Intravital imaging in different animals with arteriole (A), venule (V) and nerve fiber (N) ...
Major vessels in the neck of the mice injected with FDG-labeled erythrocytes could be visualized, su...
In a number of cardiovascular diseases, the paucity of longitudinal human data hinders our understan...
Repetitive administration of medication or contrast agents is frequently performed in mice. The intr...
<p>A-C show a regular contrast agent inflow during implantation of a port-catheter into the right at...
Repetitive administration of medication or contrast agents is frequently performed in mice. The intr...
<p>DSA directly after implantation of a catheter port shows timely filling of the superior cava vein...
Cardiac perfusion studies using computed tomography are a common tool in clinical practice. Recent t...
<p>Sequential enhancement of the right atrium (a), the right ventricle and lung arteries (b), the lu...
<p>A) Representative cast of the C57/BL6 mouse venous reservoir <i>in situ</i> with lungs (showing t...
ObjectivesTherapeutic augmentation of collateral artery growth (ie, arteriogenesis) is of particular...
<p>A) Hemodynamic tracings illustrating pressure volume (PV) catheters tracking from the right atriu...
<p>(<b>A</b>) Cerebral vascular morphology imaged by SRA. (<b>a</b>) cerebral vascular morphology wa...
<p>Craniocaudal scans performed with transverse planes of the upper and middle third of the mouse ne...
<p>, Low-magnification TPLSM image of cortical vasculature in control mouse with the blood plasma la...
<p>(a,b) Intravital imaging in different animals with arteriole (A), venule (V) and nerve fiber (N) ...
Major vessels in the neck of the mice injected with FDG-labeled erythrocytes could be visualized, su...
In a number of cardiovascular diseases, the paucity of longitudinal human data hinders our understan...
Repetitive administration of medication or contrast agents is frequently performed in mice. The intr...
<p>A-C show a regular contrast agent inflow during implantation of a port-catheter into the right at...
Repetitive administration of medication or contrast agents is frequently performed in mice. The intr...
<p>DSA directly after implantation of a catheter port shows timely filling of the superior cava vein...
Cardiac perfusion studies using computed tomography are a common tool in clinical practice. Recent t...
<p>Sequential enhancement of the right atrium (a), the right ventricle and lung arteries (b), the lu...
<p>A) Representative cast of the C57/BL6 mouse venous reservoir <i>in situ</i> with lungs (showing t...
ObjectivesTherapeutic augmentation of collateral artery growth (ie, arteriogenesis) is of particular...
<p>A) Hemodynamic tracings illustrating pressure volume (PV) catheters tracking from the right atriu...
<p>(<b>A</b>) Cerebral vascular morphology imaged by SRA. (<b>a</b>) cerebral vascular morphology wa...
<p>Craniocaudal scans performed with transverse planes of the upper and middle third of the mouse ne...
<p>, Low-magnification TPLSM image of cortical vasculature in control mouse with the blood plasma la...
<p>(a,b) Intravital imaging in different animals with arteriole (A), venule (V) and nerve fiber (N) ...
Major vessels in the neck of the mice injected with FDG-labeled erythrocytes could be visualized, su...
In a number of cardiovascular diseases, the paucity of longitudinal human data hinders our understan...