Papers
1
Total Citations
12
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About
Jaewon Jang is a leading researcher in neural interface technology, with a primary focus on the development and characterization of flexible penetrating microelectrode arrays for long-term in-vivo applications. His most-cited work, "Long-term in-vivo recording performance of flexible penetrating microelectrode arrays" (2021, 12 citations), addresses a critical challenge in neuroprosthetics: achieving stable, high-fidelity neural recordings over extended periods. Jang’s major contribution lies in demonstrating that flexible microelectrode arrays can maintain robust recording performance in living tissue, reducing immune response and signal degradation compared to rigid counterparts. This work directly supports the advancement of brain-computer interfaces and closed-loop therapeutic systems. By systematically evaluating electrode longevity and signal quality, Jang has provided foundational evidence for the clinical translation of flexible neural implants. His research bridges materials science and neural engineering, offering practical solutions for chronic recording in both animal models and future human applications. Through this pivotal study, Jang has established himself as a key contributor to the next generation of biocompatible, high-performance neural interfaces.
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