Location History:
- Erial, NJ (US) (1988)
- Cherry Hill, NJ (US) (1990)
- Boca Raton, FL (US) (2000)
- New York, NY (US) (2014)
- Salina, KS (US) (1999 - 2022)
- Commerce Township, MI (US) (2016 - 2023)
- San Diego, CA (US) (2019 - 2024)
- Fairfield, CA (US) (2024)
Company Filing History:
Years Active: 1988-2024
Title: The Innovative Contributions of Jeffrey Alan Harris
Introduction
Jeffrey Alan Harris is a notable inventor based in Salina, Kansas, with a remarkable portfolio of 15 patents. His work primarily focuses on advanced imaging systems and surgical planning technologies, showcasing his commitment to innovation in the medical field.
Latest Patents
Among his latest patents is the "High Throughput Quantitative Microscopy System." This invention provides methods and systems for an imaging system that includes multiple microscope assemblies arranged radially around a central axis. The design features vertically oriented plates with objectives positioned at the tops of the microscope assemblies, creating an x-shaped configuration that enhances imaging capabilities. Another significant patent is for "Systems and Methods for Spinal Correction Surgical Planning." This system is designed for surgical planning and assessment of spinal deformity correction. It incorporates a spinal imaging system that collects digitized positions of vertebral bodies and a control unit that calculates optimized postures and predicts optimal simulated postoperative surgical corrections.
Career Highlights
Throughout his career, Jeffrey has worked with various companies, including Nuvasive, Inc. His contributions to the field of medical technology have been instrumental in advancing surgical techniques and imaging systems.
Collaborations
Jeffrey has collaborated with notable coworkers such as Alex Turner and Matthew P Hagny, further enriching his innovative endeavors.
Conclusion
Jeffrey Alan Harris exemplifies the spirit of innovation through his significant contributions to medical technology and imaging systems. His patents reflect a deep understanding of complex systems and a commitment to improving surgical outcomes.