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Общее количество найденных документов : 35
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 1-20    21-35 
1.
Different roles of PKC and MAP kinases in arteriolar constrictions to pressure and agonists // Amer. J. Physiol.: Heart and Circ. Physiol., 2002. Vol. 52, N 6.-С.2282-2287

2.
Aging-induced phenotypic changes and oxidative stress impair coronary arteriolar function // Circ. Res., 2002. Vol. 90, N 11.-С.1159-1166

3.
PECAM-1 mediates NO-dependent dilation of arterioles to high temporal gradients of shear stress // Arteriosclerosis, Thrombosis, and Vasc. Biol., 2005. Vol. 25, N 8.-С.1590-1595

4.
Type 2 diabetic mice have increased arteriolar tone and blood pressure. Enhanced release of COX-2-derived constrictor prostaglandins // Arteriosclerosis, Thrombosis, and Vasc. Biol., 2005. Vol. 25, N 8.-С.1610-1616

5.
Aging-induced phenotypic changes and oxidative stress impair coronary arteriolar function // Circ. Res., 2002. Vol. 90, N 11.-С.1159-1166

6.
Aging-induced phenotypic changes and oxidative stress impair coronary arteriolar function // Circ. Res., 2002. Vol. 90, N 11.-С.1159-1166

7.
Koller On the role of mechanosensitive mechanisms eliciting reactive hyperemia // Amer. J. Physiol.: Heart and Circ. Physiol., 2002. Vol. 52, N 6.-С.2250-2259

8.
Aging-induced phenotypic changes and oxidative stress impair coronary arteriolar function // Circ. Res., 2002. Vol. 90, N 11.-С.1159-1166

9.
Asymmetrical dimethylarginine inhibits shear stress-induced nitric oxide release and dilation and elicits superoxide-mediated increase in arteriolar tone // Hypertension, 2007. Vol. 49, N 3.-С.563-568

10.
Koller Role of endothelium in reactive dilation of skeletal muscle arterioles // Amer. J. Physiol., 1990. Vol. 259, N 5.-С.Н1313-Н1316

11.
Koller Endothelium regulates skeletal muscle microcirculation by a blood flow velocity-sensing mechanism // Amer. J. Physiol., 1990. Vol. 258, N 3.-С.Н916-Н920

12.
Characteristics and origin of myogenic response in isolated mesenteric arterioles // Amer. J. Physiol., 1992. Vol. 263, N 5.-С.Н/1486-Н/1491

13.
Koller Endothelial regulation of wall shear stress and blood flow in skeletal muscle microcirculation // Amer. J. Physiol., 1991. Vol. 260, N 3.-С.Н862-Н868

14.
The cost of departure from optimal radii in microvascular networks // J. Theor. Biol., 1989. Vol. 136, N 3.-С.245-265

15.
ADMA impairs nitric oxide-mediated arteriolar function due to increased superoxide production by angiotensin II-NAD(P)H oxidase pathway // Hypertension, 2008. Vol. 52, N 5.-С.960-966

16.
Endothelial impairment inhibits prostaglandin and EDRF-mediated arteriolar dilation in vivo // Amer. J. Physiol., 1989. Vol. 257, N 6.-С.Н1966-Н1970

17.
Effects of endothelial impairment on arteriolar dilator responses in vivo // Amer. J. Physiol., 1989. Vol. 257, N 5.-С.41485-41489

18.
Flow-induced constriction in arterioles of hyperhomocysteinemic rats is due to impaired nitric oxide and enhanced thromboxane A[2] mediation // Arteriosclerosis, Thrombosis, and Vasc. Biol., 2001. Vol. 21, N 2.-С.233-237

19.
Exercise training augments flow-dependent dilation in rat skeletal muscle arterioles. Role of endothelial nitric oxide and prostaglandins // Circ. Res., 1995. Vol. 76, N 4.-С.544-550

20.
Koller Shear stress-induced dilation is attenuated in skeletal muscle arterioles of hypertensive rats // Hypertension, 1995. Vol. 25, N 4.-С.758-763

 1-20    21-35 
 




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