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1 nspositions, 6 renoportal anastomoses, and 1 arterialization).
2 e inflammatory cells that follows vein graft arterialization.
3 n linked to vessel maturity, we investigated arterialization.
4 ory response in a canine model of vein graft arterialization.
5 ta provide insights into miRNA regulation of arterialization and highlight the importance of vascular
6 al malignancy are associated with increasing arterialization and loss of portal blood supply; therefo
9 Although the anatomical changes of venous arterialization have been well characterized, the molecu
11 ts (AHCs) provide an effective technique for arterialization in liver transplantation (LT) when the n
12 Here, we present a novel model of venous arterialization in mice wherein the external jugular vei
13 suggesting that Notch can no longer promote arterialization in the cardinal vein during this develop
14 ediated vascular defects were accompanied by arterialization, including ectopic venous expression of
19 niques (portacaval hemitransposition, portal arterialization, multivisceral transplantation) are asso
21 by inhibiting Notch signaling and subsequent arterialization of endothelial cells, yet nothing is kno
22 tion of proangiogenic/tip cell gene sets and arterialization of hepatic vessels at the expense of LSE
23 tudy to evaluate the effect of transcatheter arterialization of the deep veins in patients with nonhe
28 gy revealed severely dilated lymphatics and "arterialization" of the pulmonary veins in those with th