Munstergeleen, Netherlands

Johan F Gijsberg


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 136(Granted Patents)


Company Filing History:


Years Active: 2000

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1 patent (USPTO):Explore Patents

Title: Innovations in Neurosurgery: The Contributions of Johan F. Gijsberg

Introduction

Johan F. Gijsberg, an innovative inventor based in Munstergeleen, Netherlands, has made significant strides in the field of neurosurgery through his patented invention. His work aims to enhance brain target localization during functional stereotactic brain surgery, offering a method that may increase the precision and effectiveness of neurological procedures.

Latest Patents

Gijsberg holds a patent for a dual electrode lead designed specifically for brain target localization. This lead features a micro-electrode at its distal end, which is utilized for recording single-cell discharge patterns, thereby enabling the identification of functional boundaries within various brain structures. In addition, the invention incorporates a macro-electrode that delivers test stimulation, helping to ascertain target locations that provide optimal therapeutic benefits while minimizing side effects. The macro-test stimulation electrode is designed with a conventional surface area ranging from 1-20 mm² for chronic stimulation conditions. The micro-electrode is strategically positioned at the distal end of an axially aligned probe, aims to enhance the accuracy of cell recording, and offers alternative designs, such as a retractable tip micro-electrode for chronic brain stimulation.

Career Highlights

Gijsberg's notable invention exemplifies his commitment to improving surgical outcomes through technological advancements. His work at Medtronic, Inc. places him at the forefront of medical innovation, where he contributes to the development of cutting-edge medical devices and therapies that can potentially transform patient care in neurosurgery.

Collaborations

Throughout his career, Johan F. Gijsberg has collaborated with esteemed colleagues, including Frans L. Gielen and Victor P. Duysens. These partnerships have enabled synergies that further enhance the capabilities and success of their innovations in the medical device field.

Conclusion

In summary, Johan F. Gijsberg's innovation of a dual electrode lead for brain target localization signifies impactful advancements in neurosurgery. His contributions not only enhance surgical precision but also represent a significant step toward improved patient outcomes in neurological treatments. Gijsberg's work, supported by his connections at Medtronic, Inc., underscores the essence of collaboration in fostering medical innovations that can change lives.

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