Area of research
Sensory Systems · Physiology
Research interest
Research interests include Ion Channels and Receptors, Pain Mechanisms and Treatments, Fibromyalgia and Chronic Fatigue Syndrome Research, and Neurobiology and Insect Physiology Research.
Aβ low threshold mechanoreceptors contribute to sensory abnormalities in fibromyalgia
Passive transfer of fibromyalgia symptoms from patients to mice
The autoimmune aetiology of unexplained chronic pain
A Systematic Review Into the Influence of Temperature on Fibromyalgia Pain: Meteorological Studies and Quantitative Sensory Testing
Neurotoxic peptides from the venom of the giant Australian stinging tree
Autoantibodies produce pain in complex regional pain syndrome by sensitizing nociceptors
Promiscuous G-Protein-Coupled Receptor Inhibition of Transient Receptor Potential Melastatin 3 Ion Channels by Gβγ Subunits
G protein βγ subunits inhibit TRPM3 ion channels in sensory neurons
New Insight in Cold Pain: Role of Ion Channels, Modulation, and Clinical Perspectives
TRPM8 is a neuronal osmosensor that regulates eye blinking in mice
Streptozotocin Stimulates the Ion Channel TRPA1 Directly
TRPA1 mediates the hypothermic action of acetaminophen
Monoacylglycerols Activate TRPV1 – A Link between Phospholipase C and TRPV1
Methylglyoxal Evokes Pain by Stimulating TRPA1
Parthenolide inhibits nociception and neurogenic vasodilatation in the trigeminovascular system by targeting the TRPA1 channel
TRPA1 Has a Key Role in the Somatic Pro-Nociceptive Actions of Hydrogen Sulfide