This inventor holds 1 USPTO granted patent. Top assignee: Korea Institute of Science and Technology. Active years: 2018.
Company Filing History:
Years Active: 2018
Title: Uikyu Chae: Innovator in Neural Probe Technology
Introduction
Uikyu Chae is a prominent inventor based in Seoul, South Korea. He has made significant contributions to the field of neural probe technology, particularly with his innovative designs that enhance the delivery of fluids to subjects in medical applications. His work is characterized by a focus on microfluidic channels that facilitate precise fluid delivery.
Latest Patents
Uikyu Chae holds a patent for a "Neural probe structure comprising cover element where fluid delivery channel is formed." This invention features a neural probe that includes a microfluidic channel, which is inserted into the body of a subject. The structure is designed to ensure that a fluid entrance communicates effectively with the microfluidic channel. The cover element of the probe is fixed to the body and includes a connecting opening for an external conduit. This innovative design allows fluid to flow from the external conduit through the fluid delivery channel, into the fluid entrance, and ultimately to the subject via the microfluidic channel. Uikyu Chae has 1 patent to his name.
Career Highlights
Uikyu Chae is affiliated with the Korea Institute of Science and Technology, where he continues to advance research in neural technologies. His work has garnered attention for its potential applications in medical diagnostics and treatment.
Collaborations
Uikyu Chae collaborates with notable colleagues, including Hyunjoo Lee and Eui Sung Yoon. Their combined expertise contributes to the innovative research environment at the Korea Institute of Science and Technology.
Conclusion
Uikyu Chae's contributions to neural probe technology exemplify the intersection of innovation and medical science. His patented designs are paving the way for advancements in fluid delivery systems, which could have significant implications for future medical treatments.
