Company Filing History:
Years Active: 2023-2025
Title: Mathias Davids: Innovator in Peripheral Nerve Stimulation Assessment
Introduction
Mathias Davids is a notable inventor based in Cambridge, MA, who has made significant contributions to the field of medical imaging and peripheral nerve stimulation. With a total of three patents to his name, Davids has focused on developing methods that enhance the safety and effectiveness of magnetic resonance imaging (MRI) procedures.
Latest Patents
Davids' latest patents include innovative methods for assessing peripheral nerve stimulation (PNS) during MRI scans. One of his patents, titled "System for and method of rapid peripheral nerve stimulation assessment of gradient coils," outlines a method that retrieves a PNS Huygens' P-matrix for a body model. This method generates a coil-specific PNS P-matrix based on the body model and determines PNS thresholds for the coil geometry. Another significant patent, "Patient-model-based determination of a stimulation of a magnetic resonance imaging," describes a method for determining PNS during MR imaging. This method involves selecting a stimulation model based on individual patient models and determining the nerve stimulation for the patient based on the gradient current during the MR pulse sequence.
Career Highlights
Throughout his career, Mathias Davids has worked with prominent organizations such as The General Hospital Corporation and Siemens Healthcare GmbH. His work has been instrumental in advancing the understanding and application of peripheral nerve stimulation in medical imaging.
Collaborations
Davids has collaborated with esteemed colleagues, including Lawrence Leroy Wald and Bastien Guerin, contributing to the development of innovative solutions in the field of MRI and nerve stimulation.
Conclusion
Mathias Davids stands out as a pioneering inventor whose work in peripheral nerve stimulation assessment has the potential to significantly improve patient safety and outcomes in MRI procedures. His contributions continue to influence the medical imaging landscape.