This inventor holds 1 USPTO granted patent. Top assignee: University of Washington. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Arielle Howell: Innovator in Microfluidic Technology
Introduction
Arielle Howell is a prominent inventor based in Seattle, WA. She has made significant contributions to the field of microfluidics, particularly through her innovative patent related to lateral flow-based systems. Her work is instrumental in advancing technologies that utilize microfluidic devices for various applications.
Latest Patents
Arielle Howell holds a patent for "Lateral flow-based systems and methods." This technology generally relates to stopped-flow microfluidic devices. Select embodiments of the present technology include microfluidic devices having a first porous element configured to receive a first fluid and a second porous element configured to receive a second fluid. The second porous element can have one or more legs overlapping with the first porous element. The device is designed such that (a) delivery of the first fluid to the first porous element causes the first fluid to flow along the length of the first porous element without substantially wetting the one or more legs, and (b) delivery of the second fluid to the second porous element causes the second fluid to flow into the overlapping regions of the first porous element, thereby substantially stopping flow of the first fluid along at least a portion of the first porous element. Arielle has 1 patent to her name.
Career Highlights
Arielle is affiliated with the University of Washington, where she continues to engage in research and development in her field. Her work has garnered attention for its potential applications in various scientific and medical domains.
Collaborations
Arielle collaborates with Joshua Buser, contributing to advancements in microfluidic technologies and their applications.
Conclusion
Arielle Howell is a notable inventor whose work in microfluidic technology is paving the way for innovative solutions in various fields. Her contributions are significant and continue to impact the scientific community.
