Beijing, China

Yanbin Shi

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Innovator Yanbin Shi: Pioneering Techniques in DNA Sequencing

Introduction

Yanbin Shi, based in Beijing, China, is an accomplished inventor recognized for his innovative contributions to the field of genetic research. He is particularly known for his patent on a method for constructing a plasma DNA sequencing library, which holds significant potential for advancements in genomics.

Latest Patents

Yanbin Shi's notable patent, titled "Method for Constructing a Plasma DNA Sequencing Library," describes a sophisticated process. This method includes extracting plasma DNA, ligating it to a sequencing linker, and purifying the ligation product. Notably, his technique excludes the traditional step of performing 5'-terminus phosphorylation for the plasma DNA. The comprehensive kit he has developed encompasses essential reagents for ligation, PCR amplification, and subsequent purification processes, optimizing the workflow for DNA sequencing.

Career Highlights

Yanbin Shi is associated with Berry Genomics Co., Ltd., where he utilizes his expertise in biotechnology to contribute to groundbreaking research. His work focuses on enhancing the efficiency and accuracy of DNA sequencing methods, which is critical for various applications, including cancer research and personalized medicine.

Collaborations

During his career, Yanbin has collaborated with distinguished colleagues such as Jianguang Zhang and Yang Gao. Their combined efforts have propelled advancements in the field, fostering an environment of innovation and collaboration within Berry Genomics.

Conclusion

With his pioneering work in DNA sequencing and a commitment to advancing genetic research, Yanbin Shi exemplifies the spirit of innovation in the scientific community. His contributions reflect a deep understanding of biotechnological processes, positioning him as a key figure in the evolution of genetic analysis methods.

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