17 results on '"Moss, Nicholas"'
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2. Reactivity of renal and mesenteric resistance vessels to angiotensin II is mediated by NOXA1/NOX1 and superoxide signaling.
3. Natriuretic and antikaliuretic effects of uroguanylin and prouroguanylin in the rat
4. Pressure, volume, and chemosensitivity in afferent innervation of urinary bladder in rats
5. Modulation of the myogenic mechanism: concordant effects of NO synthesis inhibition and O2− dismutation on renal autoregulation in the time and frequency domains
6. Renal vasoconstriction by vasopressin V1a receptors is modulated by nitric oxide, prostanoids, and superoxide but not the ADP ribosyl cyclase CD38
7. Thromboxane-induced renal vasoconstriction is mediated by the ADP-ribosyl cyclase CD38 and superoxide anion
8. Modulation of the myogenic mechanism: concordant effects of NO synthesis inhibition and O2- dismutation on renal autoregulation in the time and frequency domains.
9. The rat kidney contains high levels of prouroguanylin (the uroguanylin precursor) but does not express GC-C (the enteric uroguanylin receptor)
10. Renal vasoconstriction by vasopressin V1a receptors is modulated by nitric oxide, prostanoids, and superoxide but not the ADP ribosyl cyclase CD38.
11. Thromboxane-induced renal vasoconstriction is mediated by the ADP-ribosyl cyclase CD38 and superoxide anion.
12. The rat kidney contains high levels of prouroguanylin (the uroguanylin precursor) but does not express GC-C (the enteric uroguanylin receptor).
13. Age-dependent changes in afferent renal nerve activity in genetically hypertensive rats.
14. Reduced renal perfusion pressure causes prostaglandin-dependent excitation of R2 chemoreceptors in rats.
15. Prostaglandin blockade impairs denervation diuresis and natriuresis in the rat.
16. Renal function and renal afferent and efferent nerve activity.
17. Functional evidence for renorenal reflexes in the rat.
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