This inventor holds 3 USPTO granted patents and 2 published patent applications. Top assignees: University of Rochester, University of Washington. Active years: 2017-2026.
Company Filing History:
Years Active: 2017-2026
Title: Innovations in Tissue Engineering by Diane Dalecki
Introduction
Diane Dalecki is a prominent inventor based in Rochester, NY (US), known for her significant contributions to the field of tissue engineering. With a total of 3 patents, her work focuses on utilizing ultrasound technology to enhance the spatial organization of cells in engineered tissues.
Latest Patents
Dalecki's latest patents include a method to create patterns in tissue growth for tissue engineering. This innovative method involves arranging biological cells along predetermined patterns using ultrasound. The process includes emitting ultrasound through a holographic lens toward a plurality of cells, generating a pressure field that aligns groups of cells within parallel transverse planes. This technique allows for precise control over cell arrangement, which is crucial for effective tissue engineering.
Another notable patent is directed towards using ultrasound technology to control the spatial organization of cells in an in vitro culture system. This invention not only induces extracellular matrix remodeling but also facilitates neovessel formation, ultimately leading to the generation of vascularized engineered tissue constructs.
Career Highlights
Diane Dalecki has had a distinguished career, working at esteemed institutions such as the University of Rochester and the University of Washington. Her research has significantly advanced the understanding of tissue engineering and the application of ultrasound technology in this field.
Collaborations
Throughout her career, Dalecki has collaborated with notable colleagues, including Denise Hocking and Kelley Garvin. These partnerships have contributed to the success and impact of her research in tissue engineering.
Conclusion
Diane Dalecki's innovative work in tissue engineering, particularly through the use of ultrasound technology, has paved the way for advancements in the field. Her patents reflect a commitment to enhancing the spatial organization of cells, which is essential for developing effective engineered tissues.

