This inventor holds 1 USPTO granted patent and 1 EPO patent. Top assignees: Sunnybrook Research Institute, University of Toronto. Active years: 2021.
Company Filing History:


Years Active: 2021
Title: Qing Ba - Innovator in Bioprinting Technology
Introduction
Qing Ba is a prominent inventor based in Toronto, Canada. She has made significant contributions to the field of bioprinting, particularly with her innovative approach to tissue printing. Her work focuses on developing technologies that can aid in the healing of wounds and the creation of biomaterials.
Latest Patents
Qing Ba holds a patent for a tissue printer. This bioprinter enables the in situ formation of architected planar biomaterials and tissues by translating a printer head along a deposition surface, such as skin wounds. In handheld configurations of the instrument, cell-laden biopolymer solutions are perfused through a moving microfabricated printhead and deposited onto a stationary planar surface or a wound. The printer head may be translated via a drive mechanism. Different embodiments of the instrument are disclosed for in vivo application in small animals, as well as for large animal and clinical application. A stationary embodiment of the instrument is well suited for the continuous formation and roll-to-roll processing of planar biomaterials and tissues.
Career Highlights
Throughout her career, Qing Ba has worked with esteemed institutions such as the University of Toronto and Sunnybrook Research Institute. Her research has focused on advancing the capabilities of bioprinting technology, which has the potential to revolutionize the medical field.
Collaborations
Qing Ba has collaborated with notable colleagues, including Navid Hakimi and Richard Yihsiu Cheng. These partnerships have contributed to her innovative research and development in bioprinting.
Conclusion
Qing Ba is a trailblazer in the field of bioprinting, with her patented tissue printer showcasing her commitment to advancing medical technology. Her work has the potential to significantly impact wound healing and tissue engineering.