Area of research
Molecular Biology · Physiology
Research interest
Research interests include Nitric Oxide and Endothelin Effects, Heart Rate Variability and Autonomic Control, Ion Transport and Channel Regulation, and Ion channel regulation and function.
From blood flow to organ function: The physiology of autoregulatory dynamics.
Response of the Nephron Arterial Network and Its Interactions to Acute Hypertension: A Simulation.
Toward a full-scale model of renal hemodynamics using a reconstructed vascular tree.
Cardiovascular autonomic nervous function in children conceived by assisted reproductive technology with frozen or fresh embryo transfer.
Ephaptic coupling enables action potential conduction
The renal vasodilatation from β-adrenergic activation in vivo in rats is not driven by K<sub>V</sub>7 and BK<sub>Ca</sub> channels.
Renoprotective effects of GLP-1 receptor agonists and SGLT-2 inhibitors-is hemodynamics the key point?
A hybrid approach to full-scale reconstruction of renal arterial network.
Interacting information streams on the nephron arterial network.
Dynamic changes in renal sodium handling during sympathetic stimulation in healthy human males.
Synchronization in renal microcirculation unveiled with high-resolution blood flow imaging.
Diet-induced hypertension in rats is associated with increased renal vasoconstrictor response to angiotensin II after imitated endothelial dysfunction.
Explaining deep neural networks for knowledge discovery in electrocardiogram analysis.
DeepFake electrocardiograms using generative adversarial networks are the beginning of the end for privacy issues in medicine.
Blood flow synchronization in renal microcirculation - a high-resolution imaging study
Explaining Deep Neural Networks for Knowledge Discovery in Electrocardiogram Analysis
DeepFake electrocardiograms: the key for open science for artificial intelligence in medicine
Vascular function in adults with cyanotic congenital heart disease.
Influence of connexin45 on renal autoregulation.
Lack of Connexins 40 and 45 Reduces Local and Conducted Vasoconstrictor Responses in the Murine Afferent Arterioles.
The nephron-arterial network and its interactions
The nephron-arterial network and its interactions.
Subclinical atherosclerosis in patients with cyanotic congenital heart disease.
Interactions between renal vascular resistance and endothelium-derived hyperpolarization in hypertensive rats in vivo.
Acute intramyocardial lipid accumulation in rats does not slow cardiac conduction per se.
Intravascular assessment of coronary arteries in patients with cyanotic congenital heart disease.