Saitama, Japan

Kosuke Dodo


Average Co-Inventor Count = 9.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: **Kosuke Dodo: Innovator in Flow Cytometry**

Introduction

Kosuke Dodo is a prominent inventor based in Saitama, Japan, recognized for his innovative contributions to the field of flow cytometry. His groundbreaking work focuses on enhancing the capabilities of this technology, which is crucial in various biological and medical applications.

Latest Patents

Dodo holds a significant patent for "Systems and methods for color-scalable flow cytometry with Raman tags." This patent encompasses a method that includes labeling cells of a sample with Raman tags, allowing the sample to flow through a microfluidic channel of a flow cytometer while illuminated by a laser beam. The invention details the detection of Raman signals emitted from the tags, enabling the determination of cell characteristics based on these signals. This advancement represents a significant step forward in the precision of flow cytometry techniques.

Career Highlights

Kosuke Dodo currently works at Bayspec, Inc., where he leverages his expertise to develop cutting-edge solutions in optical technology. His work in the industry not only furthers the application of flow cytometry but also enhances the scientific community's understanding of cellular behavior and characteristics.

Collaborations

Throughout his career, Dodo has collaborated with talented individuals such as Kotaro Hiramatsu and Ryo Nishiyama. These collaborations have fostered an environment of innovation, allowing them to tackle complex problems and contribute significantly to the advancement of technology in their field.

Conclusion

Kosuke Dodo's contributions to flow cytometry exemplify the impact of innovative thinking on scientific progress. With his patent and collaborative efforts, he continues to be a pivotal figure in advancing technology that plays a crucial role in biological research and medical diagnostics. His work not only enhances the efficiency of flow cytometry but also opens new avenues for future research and application.

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