Company Filing History:
Years Active: 2024
Title: Innovations of Gang Shi in Elasticity Measurement Technology
Introduction
Gang Shi is a prominent inventor based in Nanchang, China. He has made significant contributions to the field of elasticity measurement technology, holding a total of 2 patents. His work focuses on developing advanced devices that enhance the precision and efficiency of elasticity measurements, which are crucial for medical diagnostics.
Latest Patents
Gang Shi's latest patents include the "Brillouin-optical coherence-speckle based multi-mode elasticity measurement device" and the "Brillouin-octa-speckle multi-mode elastography system device." The first patent describes a device that integrates various systems to perform high-precision measurements of elasticity in tissues. This device utilizes Brillouin scattering and optical coherence elastography to provide detailed elasticity mapping, which is essential for early diagnosis of clinical diseases. The second patent focuses on a system that combines Brillouin-optical coherence tomography with speckle detection to measure blood flow velocity and elasticity distribution in blood vessels. This innovation aims to support early diagnoses of vascular diseases.
Career Highlights
Gang Shi is affiliated with Nanchang Hangkong University, where he continues to advance research in elasticity measurement technologies. His work has garnered attention for its potential applications in clinical settings, particularly in improving diagnostic techniques.
Collaborations
Gang Shi collaborates with notable colleagues, including Xingdao He and Jiulin Shi. Their combined expertise contributes to the development of innovative solutions in the field of medical imaging and diagnostics.
Conclusion
Gang Shi's contributions to elasticity measurement technology demonstrate his commitment to advancing medical diagnostics through innovation. His patents reflect a deep understanding of the complexities involved in measuring elasticity, providing valuable tools for early disease detection.