Company Filing History:
Years Active: 2022
Title: Huamei Li: Innovator in Electromagnetic Field Applications for Tumor Treatment
Introduction
Huamei Li is a prominent inventor based in Hangzhou, China. She has made significant contributions to the field of medical technology, particularly in the development of non-invasive treatments for pathological cells. Her innovative approach focuses on utilizing electromagnetic fields to suppress tumors and promote cell health.
Latest Patents
Huamei Li holds a patent for an "Apparatus for treating pathological cells." This electromagnetic field generating apparatus is designed specifically for tumor suppression. The device operates with a static magnetic field to alternating magnetic field ratio ranging from 0.5 to 2.5, with a total intensity of up to 100 mT. It offers a non-invasive solution with low toxicity and minimal side effects, effectively inhibiting multiple tumors. The mechanism of action involves influencing intracellular superoxide radical content and promoting cell autophagy. Additionally, the apparatus can utilize an additional magnetic field with frequencies up to 100 MHz and intensities down to the microTesla range to enhance antitumor efficacy.
Career Highlights
Throughout her career, Huamei Li has worked at Zhejiang University, where she has contributed to various research initiatives. Her work has focused on the intersection of electromagnetic fields and medical applications, leading to advancements in tumor treatment methodologies.
Collaborations
Huamei Li has collaborated with notable colleagues, including Santi Tofani and Xi Chen. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas in the field of medical technology.
Conclusion
Huamei Li's contributions to the development of electromagnetic field applications for tumor treatment highlight her role as a leading inventor in the medical technology sector. Her innovative patent demonstrates the potential for non-invasive treatments that can significantly impact patient care.