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<div> <p><span style="font-size:18px"><span style="font-family:lucida sans unicode,lucida grande,sans-serif"><strong>Research Interests: </strong></span></span></p> </div> <ul> <li><strong>Bio-MEMs (Biomedical Micro-Electro-Mechanical Systems):</strong> Exploring the frontier of miniaturized devices that revolutionize medical diagnostics and treatments by integrating mechanical and electrical components at the microscopic level.</li> <li><strong>Nanotechnology:</strong> Delving into the atomic scale to engineer novel solutions that could transform everything from drug delivery systems to the creation of new materials.</li> <li><strong>Microfluidics:</strong> Pioneering small-scale fluid control technology to manipulate tiny amounts of liquids for groundbreaking advancements in chemical and biological analysis.</li> <li><strong>Biosensors:</strong> Developing sensitive and specific detectors that harness biological molecules to identify and measure substances, paving the way for faster disease detection.</li> <li><strong><span style="color:var(--tw-prose-bold)">3-D Tissue Printing:</span> </strong>Utilizing three-dimensional printing technologies to create layered living tissues, which could lead to breakthroughs in regenerative medicine and organ repair.</li> <li><strong>Cell-on-Chip Devices:</strong> Crafting innovative platforms where living cells can be studied and manipulated in controlled microenvironments, offering insights into cellular behavior.</li> <li><strong>Lab-on-Chip Devices:</strong> Condensing entire laboratories onto tiny chips for rapid medical diagnostics and environmental monitoring, dramatically cutting down on the space, cost, and time required for traditional lab tests.</li> <li><strong>Microfluidic Device for Blood Plasma Separation:</strong> Enhancing diagnostic speed and efficiency with devices that separate plasma from blood cells in minutes, using only minute samples.</li> <li><strong>Cost-Effective Micro-Pump for Lab-on-Chip Applications:</strong> Innovating affordable micro-pump technologies that increase accessibility and functionality of lab-on-chip devices, making advanced diagnostics available to wider populations.</li> <li><strong><span style="color:var(--tw-prose-bold)">Artificial Organs:</span> </strong>Advancing the field of synthetic organs to provide life-saving solutions for organ failure and shortages, offering hope where natural organ transplants are not possible.</li> <li><strong>Biomedical Engineering:</strong> Merging the design and problem-solving skills of engineering with medical and biological sciences to improve healthcare from diagnostics to treatment.</li> </ul> <div> <p> </p> </div>