Yonsei University · 医学
Professor Oh-Yun Kwon's research lab focuses on biomechanics and rehabilitation engineering, particularly in improving neuromuscular control and scapular kinematics in individuals with shoulder dysfunction. The lab also investigates clinical challenges in diabetes-related lower-limb complications, emphasizing the prevention of foot ulcers and amputations through early intervention. Additionally, the lab explores advanced polymer processing techniques, such as chaotic mixing in multilayer film fabrication, to develop novel nanostructured materials with precise control over layer morphology and interfacial properties. These diverse research directions reflect a strong integration of clinical applications and materials innovation.
Figures are computed from collected data and may differ slightly.
Real-time visual feedback can be used to activate the upper trapezius and serratus anterior muscles and to improve movement of the scapula during shoulder flexion in people with scapular winging.
n the United States, 56% to 83% of amputations occur in people with diabetes, and the most common causal factors are peripheral sensory neuropathy and neuropathic ulceration. Fifteen percent of individuals with diabetes will likely develop foot ulcers in their lifetime, and approximately 15% to 20% of these ulcers will result in lower-extremity amputation. In the presence of peripheral neuropathies, according to one research report, 4 72% of the amputations of limbs in people with diabetes occur
Abstract Chaotic mixing of immiscible binary components was recently used in a continuous flow process to obtain extruded films with very many internal layers. Where interfacial tension is small, individual layer thicknesses can be only tens of nanometers and many thousands of continuous or broken layers can be formed. Such materials are both novel and potentially important. In this study, multilayer film formation and breakup were investigated systematically by using a batch chaotic mixer to be
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