Biomedical Engineering Reference
In-Depth Information
28. Rahman, A., Matchkov, V., Nilsson, H., Aalkjaer, C.: Effects of cGMP on coordination of
vascular smooth muscle cells of rat mesenteric small arteries. J. Vasc. Res. 42 , 301-311 (2005)
29. Dull, R.O., Davies, P.F.: Flow modulation of agonist (ATP)-response (Ca2+) coupling in vas-
cular endothelial cells. Am. J. Physiol. 261 , 149-154 (1991)
30. Dull, R.O., Tarbell, J.M., Davies, P.F.: Mechanisms of flow-mediated signal transduction in
endothelial cells: kinetics of ATP surface concentrations. J. Vasc. Res. 28 , 410-419 (1992)
31. Nollert, M.U., Diamond, S.L., McIntire, L.V.: Hydrodynamic shear stress and mass transport
modulation of endothelial cell metabolism. Biotech. Bioeng. 38 , 588-602 (1991)
32. Shen, J., Gimbrone Jr,M.A., Luscinskas, F.W., Dewey Jr, C.F.: Regulation of adenine nucleotide
concentration at endothelium-fluid interface by viscous shear flow. Biophys. J. 64 , 1323-1330
(1993)
33. John, K., Barakat, A.I.: Modulation of ATP/ADP concentration at the endothelial surface by
shear stress: effect of flow-induced ATP release. Ann. Biomed. Eng. 29 , 740-751 (2001)
34. Choi, H.W., Ferrara, K.W., Barakat, A.I.:Modulation of ATP/ADP concentration at the endothe-
lial surface by shear stress: effect of flow recirculation. Ann. Biomed. Eng. 35 , 505-516 (2007)
35. David, T.: Wall shear stress modulation of ATP/ADP concentration at the endothelium. Ann.
Biomed. Eng. 31 , 1231-1237 (2003)
36. Plank, M.J., Wall, D.N.J.: Atherosclerosis and calcium signalling in endothelial cells. Prog.
Biophys. Mol. Bio. 91 , 287-313 (2006)
37. Hu, X., Xiang, C., Cao, L.L.: A mathematical model for ATP-mediated calcium dynamics in
vascular endothelial cells induced by fluid shear stress. Appl. Math. Mech. 29 , 1291-1298
(2008)
38. Boileau, E., Bevan, R.L.T., Sazonov, I., Nithiarasu, P.: Flow-induced ATP release in patient-
specific arterial geometries: a comparative study of computational models. Intl. J. Numer.
Method. Biomed. Eng. 29 , 1038-1056 (2013)
39. Buxton, I.L., Kaiser, R.A., Oxhorn, B.C., Cheek, D.J.: Evidence supporting the nucleotide axis
hypothesis: ATP release and metabolism by coronary endothelium. Am. J. Physiol. Heart Circ.
Physiol. 281 , 1657-1666 (2001)
40. Yang, S., Cheek, D.J., Westfall, D.P., Buxton, I.L.: Purinergic axis in cardiac blood vessels.
Agonist-mediated release of ATP from cardiac endothelial cells. Circ. Res. 74 , 401-407 (1994)
41. Duza, T., Sarelius, I.H.: Conducted dilations initiated by purines in arterioles are endothelium
dependent and require endothelial calcium. Am. J. Physiol. Heart Circ. Physiol. 285 , 26-37
(2003)
42. Arciero, J.C., Carlson, B.E., Secomb, T.W.: Theoretical model of metabolic blood flow regu-
lation: roles of ATP release by red blood cells and conducted responses. Am. J. Physiol. Heart
Circ. Physiol. 295 , 1562-1571 (2008)
43. Davies, P.F.: Flow-mediated endothelial mechanotransduction. Physiol. Rev. 75 , 519-560
(1995)
44. George, C.H., Parthimos, D., Silvester, N.C.: A network-oriented perspective on cardiac cal-
cium signaling. Am. J. Physiol. Cell Physiol. 303 , C897-C910 (2012)
45. Stansberry, K.B., Shapiro, S.A., Hill, M.A., et al.: Impaired peripheral vasomotion in diabetes.
Diab. Care 19 , 715-721 (1996)
46. Parthimos, D., Schmiedel, O., Harvey, J.N., Griffith, T.M.: Deterministic nonlinear features of
cutaneous perfusion are lost in diabetic subjects with neuropathy. Microvasc. Res. 82 , 42-51
(2011)
47. El Khatib, N., Genieys, V., Volpert, V.: Atherosclerosis initiation modeled as an inflammatory
process. Math. Model. Nat. Phenom. 2 , 126-141 (2007)
48. Hoskins, P.R., Hardman, D.: Three-dimensional imaging and computational modelling for
estimation of wall stresses in arteries. Br. J. Radiol. 82 , S3-S17 (2009)
49. Cilla, M., Pena, E.: Mathematical modelling of atheroma plaque formation and development
in coronary arteries. J. R. Soc. Interface. 11 (90), 20130866 (2014)
50. Mukherjee, S., Thomas, N.L., Williams, A.J.: Amechanistic description of gating of the human
cardiac ryanodine receptor in a regulated minimal environment. J. Gen. Physiol. 140 , 139-158
(2012)
Search WWH ::




Custom Search