Results 241 to 250 of about 155,517 (332)

Effects of tempol on renal medullary tissue hypoxia in an ovine model of Gram‐negative septic acute kidney injury

open access: yesExperimental Physiology, EarlyView.
Abstract Renal arterial infusion of tempol (RAT) at the onset of Gram‐negative sepsis can prevent sepsis‐induced medullary tissue hypoxia and acute kidney injury (AKI). However, it is not known whether treatment with tempol at a clinically relevant time point of sepsis is similarly effective. Thus, we examined whether tempol can reverse renal medullary
Rachel Peiris   +10 more
wiley   +1 more source

Multi-level modelling of hepatic perfusion using vascular corrosion casting and µCT imaging [PDF]

open access: yes, 2015
Cornillie, Pieter   +6 more
core  

Establishment of a mouse model for ischaemic heart failure induced by coronary microembolization via left ventricular oil injection

open access: yesExperimental Physiology, EarlyView.
Abstract Over the past three decades, there has been a steady increase in clinical attention to ischaemic heart failure caused by coronary microembolization. Nonetheless, a suitable mouse model for studying this condition remains limited. In the present study, we developed a mouse model of coronary microembolization‐induced ischaemic heart failure by ...
Lang Pei   +10 more
wiley   +1 more source

Diet reversal improves hyperglycaemia-related coronary dysfunction and attenuates subsequent myocardial ischemia/reperfusion injury.

open access: yesJournal of Molecular and Cellular Cardiology Plus
Juma El-Awaisi   +4 more
doaj   +1 more source

Impaired Windkessel function and proximal aortic stiffness: Linking vascular ageing to cognitive decline

open access: yesExperimental Physiology, EarlyView.
Abstract Central arterial stiffening, particularly of the proximal aorta, is increasingly recognised as a pivotal contributor to cardiovascular disease, dementia, and mild cognitive impairment. Loss of Windkessel function amplifies pulsatile pressure, reduces diastolic perfusion and accelerates microvascular damage in the brain.
Jun Sugawara, Hirofumi Tanaka
wiley   +1 more source

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