Location History:
- Hammonds Plains, CA (2018)
- Hammond Plains, CA (2020 - 2023)
Company Filing History:
Years Active: 2018-2025
Title: Asia Ivery: Innovator in Acellular Soft Tissue-Derived Matrices
Introduction
Asia Ivery is a prominent inventor based in Hammond Plains, CA. She has made significant contributions to the field of medical technology, particularly in the development of acellular soft tissue-derived matrices. With a total of five patents to her name, Ivery is recognized for her innovative approaches to treating various medical conditions.
Latest Patents
One of Asia Ivery's latest patents focuses on acellular soft tissue-derived matrices and methods for using them. The methods provided aim to treat several conditions affecting one or more body features. The process involves implanting an acellular soft tissue-derived matrix in, on, or near the body feature. This matrix comprises a delipidated, decellularized adipose matrix, which is produced by delipidating an adipose tissue sample followed by decellularizing it. The resulting matrix contains a lower proportion of lipids compared to matrices produced by decellularizing adipose tissue before delipidation. The delipidated, decellularized adipose matrix can be provided in various forms, including particles, a slurry, a paste, a gel, or an injectable form.
Career Highlights
Asia Ivery is currently associated with the Musculoskeletal Transplant Foundation, where she continues to advance her research and innovations. Her work has the potential to significantly impact the field of regenerative medicine and improve patient outcomes.
Collaborations
Asia Ivery collaborates with notable professionals in her field, including Yen-Chen Huang and Bryan Choi. These collaborations enhance her research and contribute to the development of innovative solutions in medical technology.
Conclusion
Asia Ivery is a trailblazer in the field of acellular soft tissue-derived matrices, with a strong focus on improving medical treatments. Her contributions and collaborations are paving the way for advancements in regenerative medicine.