Livingston, NJ, United States of America

Ali Ebrahiml


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Ali Ebrahiml

Introduction

Ali Ebrahiml is a notable inventor based in Livingston, NJ (US). He has made significant strides in the field of tissue engineering, particularly with his innovative patent that addresses the challenges associated with avascular tissues such as cartilage. His work is crucial in advancing medical technology and improving patient outcomes.

Latest Patents

Ebrahiml holds a patent for a biphasic implant device that provides a gradient for tissue implants. This device is designed for the repair of tissues, especially those that lack adequate blood supply. One embodiment of the patent presents an electric potential that can receive and accumulate desirable factors or molecules from surrounding fluid when exposed to dynamic loading. Another embodiment promotes tissue conduction by controlling cellular invasion through the use of gradients until competent tissue forms. Additionally, the implant can be formed into a multi-phasic device that provides deep tissue mechanical stimulus by conducting mechanical and fluid forces experienced at the surface of the implant.

Career Highlights

Ali Ebrahiml is associated with Kensey Nash Corporation, where he continues to contribute to advancements in medical devices and tissue repair technologies. His work is characterized by a commitment to innovation and improving the efficacy of medical treatments.

Collaborations

Ebrahiml collaborates with talented professionals in his field, including Emme M Castiglione-Dodd and Gino Bradioa. These collaborations enhance the development and application of his innovative ideas.

Conclusion

Ali Ebrahiml's contributions to the field of tissue engineering through his innovative patent demonstrate his dedication to advancing medical technology. His work has the potential to significantly impact the treatment of avascular tissues, paving the way for improved patient care and outcomes.

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