Company Filing History:
Years Active: 2022-2025
Title: Innovations by Angelo Sassaroli
Introduction
Angelo Sassaroli is a notable inventor based in Arlington, MA (US). He has made significant contributions to the field of spectrophotometry and optical spectroscopy. With a total of 3 patents, his work focuses on enhancing measurement techniques for turbid media.
Latest Patents
One of his latest patents is titled "Method and apparatus for spectrophotometry of turbid media." This invention features a self-calibrating hybrid spectrophotometer that includes a receptacle for receiving a cuvette, first and second optodes for light entry, and third and fourth optodes for light exit. The controller manages the light delivery to the optodes, allowing for precise measurements of optical transmittance, which are crucial for determining the absorption and scattering coefficients of samples.
Another significant patent is the "Dual-slope method for enhanced depth sensitivity in diffuse optical spectroscopy." This apparatus utilizes near-infrared spectroscopy with intensity-modulated or pulsed radiation. It includes sources and detectors positioned at specific distances to derive parameters indicative of matched slopes. This innovation enhances sensitivity to deeper layers of the medium being investigated, making it a valuable tool in optical spectroscopy.
Career Highlights
Angelo Sassaroli is affiliated with Tufts College, where he applies his expertise in optical technologies. His work has contributed to advancements in the understanding and measurement of turbid media, which is essential in various scientific and medical applications.
Collaborations
He has collaborated with notable colleagues such as Sergio Fantini and Giles Blaney, further enriching his research and innovations in the field.
Conclusion
Angelo Sassaroli's contributions to spectrophotometry and optical spectroscopy demonstrate his commitment to advancing scientific measurement techniques. His patents reflect innovative approaches that enhance the understanding of complex media.