Area of research
Physiology · Complementary and alternative medicine
Research interest
Research interests include Myogenic contraction, Constriction, Vasoconstriction, Internal medicine, and Skeletal muscle.
Nrf2 deficiency blunts exercise training-induced adaptations of coronary resistance arteries
Effects of ageing and exercise training on cerebrovascular vasomotor reactivity, depressive behaviour and the hippocampal transcriptome
Cystathionine γ Lyase Deletion Enhances Corpus Cavernosum Contraction via Thromboxane A <sub>2</sub> and Neurogenic Pathways Without Affecting Endothelial Function
Effects of aging on diaphragm hyperemia and blood flow distribution in male and female Fischer 344 rats
Pulmonary hypertension impairs vasomotor function in rat diaphragm arterioles
Short‐term aerobic exercise prevents development of glucocorticoid myopathic features in aged skeletal muscle in a sex‐dependent manner
Adaptations of bone and bone vasculature to muscular stretch training
Effects of aging and exercise training on bone and marrow blood flow and vascular function
AKT Mediates Adiponectin-Dependent Regulation of VSMC Phenotype
Preexercise intermittent passive stretching and vascular function after treadmill exercise
The Duality of Adiponectin: The Role of Sex in Atherosclerosis
Microvascular Adaptations to Muscle Stretch: Findings From Animals and the Elderly
Microvascular Function in Skeletal Muscle of Adiponectin Knockout Mice
Role of Potassium Channel Function and Long‐term Exercise Training in Soleus Resistance Arterioles
Coronary microvascular adaptations distal to epicardial artery stenosis
Aerobic exercise training reduces cardiac function and coronary flow-induced vasodilation in mice lacking adiponectin
Prolonged mechanical ventilation increases diaphragm arteriole circumferential stretch without changes in stress/stretch: Implications for the pathogenesis of ventilator‐induced diaphragm dysfunction
Impact of Nrf2 Deficiency on Potassium Channel Function in Rat Soleus Arterioles
Impact of Nrf2‐deficiency on vasoreactivity of posterior cerebral arteries is sex‐specific.
Static Muscle Stretching Enhances Vascular Responsiveness of the Tibial Nutrient Artery
Effects of Aging and Exercise Training on Vasomotor Function of Bone Resistance Arteries and Bone Blood Flow
Daily Passive Muscle Stretching Improves Flow-Mediated Dilation of Popliteal Artery and 6-minute Walk Test in Elderly Patients with Stable Symptomatic Peripheral Artery Disease
Prostate cancer cell growth characteristics in serum and prostate-conditioned media from moderate-intensity exercise-trained healthy and tumor-bearing rats.
PubMed 2019cited by 13position: middle
Adaptations of Bone and Bone Vasculature to Muscular Stretch Training
Exercise training‐induced enhancement of coronary vasodilatory function is absent in rats lacking the transcription factor, Nrf2
Adiponectin‐deficient Mice Demonstrate Impaired Coronary Arteriolar Vasodilation and Subsequent Decline in Cardiac Function
Effect of Hypoxia on Prostate Cancer Cell Viability in Serum and Prostate Conditioned Media from Mixed‐Intensity Exercise Trained Rats
Exercise training‐induced adaptations of vascular smooth muscle vasodilatory function are absent in muscle arterioles from rats lacking the nuclear factor (erythroid‐derived 2)‐like 2 (Nrf2) gene
Effects of sex and exercise training on bone volume and density in Nrf2‐deficient rats
Daily muscle stretching enhances blood flow, endothelial function, capillarity, vascular volume and connectivity in aged skeletal muscle