Company Filing History:
Years Active: 2006-2013
Title: Notable Innovations by Inventor Yuan-Hsiang Lee
Introduction
Yuan-Hsiang Lee, an accomplished inventor based in Winchester, MA, holds a significant portfolio of five patents. His work primarily focuses on advancements in biological assays and optofluidic devices, showcasing his dedication to enhancing scientific methodologies through innovative technologies.
Latest Patents
Yuan-Hsiang Lee's latest patents include a groundbreaking method for increasing spectroscopic signals in biological assays. This method involves forming a suspension of magnetically attractable particles and utilizing magnetic fields to manipulate their agglomeration for improved detection. Another notable patent is for an optofluidic device that integrates a novel channel design, facilitating the efficient guidance of radiation while accommodating various sample types. These inventions highlight Lee's commitment to pushing the boundaries of technology in the fields of biology and optics.
Career Highlights
Throughout his career, Yuan-Hsiang Lee has made significant contributions to esteemed organizations such as Ge Homeland Protection, Inc. and General Electric Company. His experience in these innovative environments has allowed him to refine his skills and contribute to projects that have substantial impact on technology and safety.
Collaborations
In his professional journey, Lee has collaborated with notable individuals, including Michael Craig Burrell and Frank John Mondello. Such partnerships underscore the collaborative nature of innovation and reflect the importance of teamwork in driving advancements in technology.
Conclusion
Yuan-Hsiang Lee exemplifies the spirit of innovation through his impressive portfolio of patents and contributions to prominent companies. His latest inventions pave the way for enhanced scientific processes, demonstrating the continuous evolution of technology driven by passionate inventors. As he continues to develop innovative solutions, the impact of his work will undoubtedly resonate across various fields.