Fremont, CA, United States of America

Sarah Taylor


Average Co-Inventor Count = 4.6

ph-index = 1

Forward Citations = 5(Granted Patents)

Location History:

  • Fremont, CA (US) (2020 - 2021)
  • Pleasanton, CA (US) (2024)


Years Active: 2020-2024

where 'Filed Patents' based on already Granted Patents

5 patents (USPTO):
1 patent (EPO):

Title: Innovations of Inventor Sarah Taylor

Introduction

Sarah Taylor is a prominent inventor based in Fremont, California. She has made significant contributions to the field of polynucleotide processing, holding a total of five patents. Her work focuses on developing methods and systems that enhance analyte characterization through innovative techniques.

Latest Patents

One of her latest patents is titled "Methods and systems for processing polynucleotides." This patent provides compositions, methods, systems, and devices for polynucleotide processing and analyte characterization. The disclosed methods may be useful for various applications, including analyte characterization by polynucleotide sequencing. The compositions generally describe barcoded oligonucleotides, which can be bound to a bead, such as a gel bead. This technology is useful for characterizing one or more analytes, including proteins, genomic DNA, and RNA. Additionally, the patent describes barcoded labeling agents and oligonucleotide molecules that are useful for tagging analytes for characterization.

Career Highlights

Throughout her career, Sarah has worked with notable organizations, including 10x Genomics, Inc. and Leland Stanford Junior University. Her experience in these institutions has allowed her to collaborate on groundbreaking research and development projects.

Collaborations

Some of her coworkers include Katherine Pfeiffer and Michael Stubbington. Their collaborative efforts have contributed to the advancement of polynucleotide processing technologies.

Conclusion

In summary, Sarah Taylor is an influential inventor whose work in polynucleotide processing has led to significant advancements in the field. Her innovative patents and collaborations highlight her commitment to enhancing analyte characterization techniques.

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