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1 aling for the development and maintenance of venous valves.
2 and in the atrioventricular, semilunar, and venous valves.
3 lantation, and confirmed Prox1 expression in venous valves.
4 itical for the development or maintenance of venous valves.
7 alization of individual arterioles, venules, venous valves and millimetre-scale arteries and veins to
8 ptum, display dilated atria with hypoplastic venous valves, and exhibit blood backflow from the heart
9 ion, fusion with the inferior margins of the venous valves, and formation of the mouth of the coronar
10 ions are not well understood, but congenital venous valve aplasia or agenesis may play a role in some
15 therefore identified molecular regulators of venous valve development and maintenance and highlighted
16 eads to severe hypoplasia of the SAN and the venous valves, dis-regulation of the SAN genetic network
17 evated capillary pressures due to failure of venous valves, elevated capillary permeability from loca
20 s have been strongly associated with primary venous valve failure in both the superficial and deep ve
21 describe various presentations of persistent venous valves, focusing on the right venous valve in thi
23 sistent venous valves, focusing on the right venous valve in this illustrated multimodality imaging a
24 e (reflux), and FOXC2 is highly expressed on venous valves in mouse embryos, we tested the hypothesis
27 at we believe to be the first description of venous valve morphogenesis and identify signaling pathwa
29 oclivity for venous thrombosis to develop in venous valve pockets and suggest an alternative strategy
30 hat aberrant flow patterns that may occur in venous valve pockets of individuals with common stasis-r
36 d that the endothelial cells surrounding the venous valve, where DVTs originate, express high levels