Biomedical Engineering Reference
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173. Hein TW, Potts LB, Xu W, Yuen JZ, Kuo L (2012) Temporal development of retinal
arteriolar endothelial dysfunction in porcine type 1 diabetes. Invest Ophthalmol Vis Sci
53:7943-7949
174. Hayashi K, Epstein M, Loutzenhiser R, Forster H (1992) Impaired myogenic responsiveness
of
the
afferent
arteriole
in
streptozotocin-induced
diabetic
rats:
role
of
eicosanoid
derangements. J Am Soc Nephrol 2:1578-1586
175. Sachidanandam K, Hutchinson JR, Elgebaly MM, Mezzetti EM, Wang MH (2009)
Differential effects of diet-induced dyslipidemia and hyperglycemia on mesenteric resistance
artery structure and function in type 2 diabetes. J Pharmacol Exp Ther 328:123-130
176. Adebiyi A, Zhao G, Cheranov SY, Ahmed A, Jaggar JH (2007) Caveolin-1 abolishment
attenuates the myogenic response in murine cerebral arteries. Am J Physiol Heart Circ
Physiol 292:H1584-H1592
177. Howitt L, Sandow SL, Grayson TH, Ellis ZE, Morris MJ, Murphy TV (2011) Differential
effects of diet-induced obesity on bkca {beta}1-subunit expression and function in rat
skeletal muscle arterioles and small cerebral arteries. Am J Physiol Heart Circ Physiol
301:H29-H40
178. Straub SV, Girouard H, Doetsch PE, Hannah RM, Wilkerson MK, Nelson MT (2009)
Regulation of intracerebral arteriolar tone by k(v) channels: effects of glucose and PKC. Am
J Physiol Cell Physiol 297:C788-C796
179. Cipolla MJ, McCall AL, Lessov N, Porter JM (1997) Reperfusion decreases myogenic
reactivity and alters middle cerebral artery function after focal cerebral ischemia in rats.
Stroke 28:176-180
180. Nobe K, Nezu Y, Tsumita N, Hashimoto T, Honda K (2008) Intra- and extrarenal arteries
exhibit different profiles of contractile responses in high glucose conditions. Br J Pharmacol
155:1204-1213
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