Palo Alto, CA, United States of America

Cecile Limborg


Average Co-Inventor Count = 8.0

ph-index = 2

Forward Citations = 41(Granted Patents)


Company Filing History:


Years Active: 2018-2020

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2 patents (USPTO):Explore Patents

Title: Innovations in Radiation Therapy by Cecile Limborg

Introduction

Cecile Limborg is an accomplished inventor based in Palo Alto, CA. She has made significant contributions to the field of radiation therapy, holding 2 patents that focus on enhancing treatment methods. Her work is particularly relevant in the context of rapid radiation treatments, which are crucial for improving patient outcomes.

Latest Patents

Cecile Limborg's latest patents include innovative methods and systems for beam intensity-modulation to facilitate rapid radiation therapies. These patents detail techniques for radiation generation and delivery, electron source design, and beam control and shaping. The systems described are especially beneficial when utilized with a compact high-gradient, very high energy electron (VHEE) accelerator. This technology allows for the treatment of patients from multiple beam directions with remarkable speed. The methods can deliver high-dose radiation therapy quickly enough to freeze physiological motion, while maintaining a degree of dose conformity that meets or exceeds conventional photon therapy.

Career Highlights

Cecile Limborg is affiliated with Leland Stanford Junior University, where she continues to advance her research in radiation therapy. Her work is characterized by a commitment to improving the efficacy and safety of radiation treatments for patients.

Collaborations

Cecile collaborates with notable colleagues such as Vinod Bharadwaj and Valery Dolgashev, contributing to a dynamic research environment focused on innovative solutions in medical technology.

Conclusion

Cecile Limborg's contributions to radiation therapy through her patents and research at Leland Stanford Junior University highlight her role as a leading inventor in the field. Her work is paving the way for advancements that could significantly enhance patient care in radiation treatments.

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