Fort Collins, CO, United States of America

Matthias J Ottenberg



Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 81(Granted Patents)


Company Filing History:


Years Active: 2006

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1 patent (USPTO):Explore Patents

Title: Matthias J Ottenberg: Innovator in Flow Cytometry Technology

Introduction

Matthias J Ottenberg is a notable inventor based in Fort Collins, Colorado. He has made significant contributions to the field of flow cytometry, particularly through his innovative patent that enhances the analysis of particles and cells.

Latest Patents

Ottenberg holds a patent for a "Transiently Dynamic Flow Cytometer Analysis System." This invention involves a flow cytometry apparatus and methods designed to process information related to particles or cells that are entrained in a sheath fluid stream. The system allows for the assessment, differentiation, assignment, and separation of such particles or cells, even at high rates of speed. A key feature of this technology is the use of a first signal processor, which can work individually or in combination with additional signal processors to apply compensation transformations on data from signals. These transformations can involve complex operations to compensate for various operating parameters, ultimately providing critical information for defining and differentiating particles.

Career Highlights

Matthias J Ottenberg is associated with Dakocytomation Colorado, Inc., where he has been instrumental in advancing flow cytometry technologies. His work has contributed to the development of systems that improve the efficiency and accuracy of particle analysis.

Collaborations

Ottenberg has collaborated with notable colleagues, including Carl E Ellison and Paul Barclay Purcell. Their combined expertise has furthered the innovations in flow cytometry and related fields.

Conclusion

Matthias J Ottenberg's contributions to flow cytometry through his patent and collaborative efforts highlight his role as an innovator in this specialized field. His work continues to influence advancements in particle analysis technologies.

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