Edmonton, Canada

Daniel Jed Harrison

USPTO Granted Patents = 6 

 

Average Co-Inventor Count = 4.6

ph-index = 3

Forward Citations = 444(Granted Patents)


Location History:

  • Edmondton, CA (2019)
  • Edmonton, CA (1998 - 2020)

Company Filing History:


Years Active: 1998-2020

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6 patents (USPTO):Explore Patents

Title: The Innovations of Daniel Jed Harrison

Introduction

Daniel Jed Harrison is a notable inventor based in Edmonton, Canada. He has made significant contributions to the field of optogenetics, particularly in the development of innovative probes for measuring membrane potential. With a total of 6 patents to his name, Harrison's work has the potential to advance our understanding of cellular processes.

Latest Patents

Harrison's latest patents include groundbreaking work on optogenetic probes for measuring membrane potential. These patents provide variants of an archaerhodopsin that are useful for applications such as optical measurement of membrane potential. The inventions also encompass polynucleotides encoding the variants, nucleic acid constructs, vectors, and cells comprising the polynucleotides and polypeptides. Methods of using these variants are also detailed in his patents, showcasing the versatility and applicability of his innovations.

Career Highlights

Throughout his career, Daniel Jed Harrison has worked with prestigious institutions, including the University of Alberta and Harvard College. His experience in these renowned organizations has allowed him to collaborate with leading experts in the field and contribute to significant advancements in optogenetics.

Collaborations

Harrison has collaborated with notable individuals such as Adam Ezra Cohen and Daniel Hochbaum. These partnerships have further enriched his research and have led to the development of innovative solutions in the realm of optogenetics.

Conclusion

Daniel Jed Harrison's contributions to the field of optogenetics through his patents and collaborations highlight his role as a leading inventor. His work continues to pave the way for advancements in understanding cellular mechanisms and potential therapeutic applications.

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