Location History:
- Lincoln, MA (US) (2016)
- Cambridge, MA (US) (2020)
Company Filing History:
Years Active: 2016-2020
Title: Nandini Rajan: Innovator in Optical Imaging and Motion Detection
Introduction
Nandini Rajan is a prominent inventor based in Cambridge, MA. She has made significant contributions to the fields of optical imaging and motion detection. With a total of 2 patents, her work has advanced the capabilities of imaging technologies.
Latest Patents
Nandini Rajan's latest patents include the "Enhancement of video-rate fluorescence imagery collected in the second near-infrared optical window." This invention provides a system and method that operates under conditions where the object being imaged may destroy or negate the information necessary for optical parallax. It is designed to elicit luminescence from targets through irradiation with pump light at different wavelengths, allowing for the acquisition of optical data from these targets. Another notable patent is the "Temporal structured-illumination motion-detection system." This invention offers devices and methods for detecting and tracking fast-moving objects, such as eye movements. The system generates multiple images of a moving object within a single frame by using sequentially activated light sources, enabling tracking with a temporal resolution that exceeds standard frame rates.
Career Highlights
Nandini Rajan is affiliated with the Massachusetts Institute of Technology, where she continues to innovate and contribute to her field. Her work has garnered attention for its practical applications and technological advancements.
Collaborations
Nandini has collaborated with notable colleagues, including Andrew M. Siegel and Angela M. Belcher, who have also made significant contributions to their respective fields.
Conclusion
Nandini Rajan's innovative work in optical imaging and motion detection exemplifies the impact of her inventions on technology. Her patents reflect a commitment to advancing scientific understanding and practical applications in imaging technologies.