This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: The General Hospital Corporation. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: The Innovative Contributions of Danielle J Harper
Introduction
Danielle J Harper is a notable inventor based in Somerville, MA (US). She has made significant contributions to the field of optical coherence tomography, showcasing her expertise and innovative spirit. With a focus on enhancing imaging performance, her work has implications for various medical applications.
Latest Patents
Danielle holds a patent for an "Apparatus and methods to enhance signal to noise ratio imaging performance in optical coherence tomography." This optical coherence tomography system is capable of operating in two or more optical bandwidth configurations. It allows for a trade-off between high-resolution imaging and high signal-to-noise ratio imaging, enabling deeper imaging depth. The system and associated methods facilitate both high-resolution, shallow penetration depth and low-resolution, deep penetration depth optical coherence tomography imaging using a single light source. The methods and apparatus described allow the system to dynamically switch between modes or operate in a hybrid mode that balances resolution and SNR/depth of penetration.
Career Highlights
Danielle is currently associated with The General Hospital Corporation, where she continues to advance her research and development efforts. Her work is characterized by a commitment to improving medical imaging technologies, which can significantly impact patient care and diagnostics.
Collaborations
Danielle collaborates with Benjamin J Vakoc, a fellow researcher, to further enhance the capabilities of optical coherence tomography systems. Their partnership exemplifies the importance of teamwork in driving innovation in the medical field.
Conclusion
Danielle J Harper's contributions to optical coherence tomography represent a significant advancement in medical imaging technology. Her innovative approach and dedication to enhancing imaging performance are commendable and have the potential to improve diagnostic capabilities in healthcare.
