Wunstorf, Germany

Malte Schultz-Ruhtenberg

This inventor holds 1 USPTO granted patent. Top assignee: Lpkf Laser & Electronics Ag. Active years: 2026.


Average Co-Inventor Count = 1.0

ph-index = 1


Company Filing History:


Years Active: 2026

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1 patent (USPTO):Explore Patents

Title: Malte Schultz-Ruhtenberg: Innovator in Cell Cultivation Technology

Introduction

Malte Schultz-Ruhtenberg is a notable inventor based in Wunstorf, Germany. He has made significant contributions to the field of cell cultivation technology. His innovative approach has led to the development of a unique device and method that enhances the efficiency of cell cultivation.

Latest Patents

Malte holds a patent for a "Device and method for cell cultivation." This invention features a carrier suitable for the cultivation of cells, which includes a plate-shaped carrier made of materials such as glass, silicon, or plastic. The design incorporates at least one first recess that extends over a first thickness section of the carrier. Additionally, an arrangement of second recesses extends from the first recess into a second thickness section of the carrier. This innovative structure allows for the formation of wells that are suitable for receiving cells and synthetic particles.

Career Highlights

Malte Schultz-Ruhtenberg is associated with LPKF Laser & Electronics AG, where he applies his expertise in developing advanced technologies. His work focuses on improving methods for cell cultivation, which is crucial for various applications in biotechnology and medical research.

Collaborations

Malte has collaborated with talented individuals such as Robin A. Krüger and Antonia Heine-Dank. These partnerships have contributed to the advancement of his research and the successful development of his patented technologies.

Conclusion

Malte Schultz-Ruhtenberg's innovative contributions to cell cultivation technology demonstrate his commitment to advancing scientific research. His patent reflects a significant step forward in the field, showcasing the potential for improved methodologies in cell cultivation.

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