Area of research
Endocrinology, Diabetes and Metabolism · Orthopedics and Sports Medicine
Research interest
Research interests include Diabetic Foot Ulcer Assessment and Management, Sports injuries and prevention, and High Altitude and Hypoxia.
Effects Of Modifying Arterial Compliance On Measures Of Arterial Occlusion Pressure In Blood Flow Restriction
Brachial Pulse Wave Velocity Contributes To Upper Body Arterial Occlusion Pressure In Blood Flow Restriction
Corrigendum: A narrative review of the effects of blood flow restriction on vascular structure and function
A comparison of variability between absolute and relative blood flow restriction pressures
A narrative review of the effects of blood flow restriction on vascular structure and function
Mechanisms Mediating Increased Endurance Following High- And Low-load Training With And Without Blood Flow Restriction
Blood Flow Restriction Stimulus Differs Between Absolute And Relative Pressures
The Influence Of Limb Blood Flow On Muscle Growth With Different Resistance Training Protocols
Applying Relative And Absolute Blood Flow Restriction Alters Blood Flow Velocity But Not Blood Profiles
Examining Changes in Bat Swing Kinematics in Different Areas of the Strike Zone in Collegiate Baseball Players
MEASURING LIMB OCCLUSION PRESSURE USING DIFFERENT VASCULAR DOPPLERS
High-pressure blood flow restriction with very low load resistance training results in peripheral vascular adaptations similar to heavy resistance training
Assessing differential responders and mean changes in muscle size, strength, and the crossover effect to 2 distinct resistance training protocols
Perceptual changes to progressive resistance training with and without blood flow restriction
Blood flow restriction does not augment low force contractions taken to or near task failure
The Basics of Training for Muscle Size and Strength: A Brief Review on the Theory
Blood flow restriction augments the skeletal muscle response during very low-load resistance exercise to volitional failure
Can changes in echo intensity be used to detect the presence of acute muscle swelling?
High Blood Flow Restriction Pressure is Necessary to Induce Vascular Adaptations with Very Low-Load Training
Arm Circumference As A Method To Standardize The Practical Blood Flow Restriction Pressure
High Pressure Blood Flow Restriction Is Necessary For Peripheral Vascular Adaptations With Very Low Loads
Muscle Adaptations to High-Load Training and Very Low-Load Training With and Without Blood Flow Restriction
The Impact of Ultrasound Probe Tilt on Muscle Thickness and Echo-Intensity: A Cross-Sectional Study
Acute skeletal muscle responses to very low‐load resistance exercise with and without the application of blood flow restriction in the upper body
Very-low-load resistance exercise in the upper body with and without blood flow restriction: cardiovascular outcomes
Motor adaption during repeated motor control testing: Attenuated muscle activation without changes in response latencies
Acute hemodynamic changes following high load and very low load lower body resistance exercise with and without the restriction of blood flow