This inventor holds 1 USPTO granted patent. Top assignees: Bunkoukeiki Co., Ltd., Kobe University, Kyoto University. Active years: 2026.
Company Filing History:


Years Active: 2026
Title: Innovations by Shoko Tsuji in Plant Stress Diagnosis
Introduction
Shoko Tsuji is an accomplished inventor based in Kyoto, Japan. He has made significant contributions to the field of environmental stress diagnosis in plants. His innovative work focuses on developing technologies that enhance our understanding of how plants respond to environmental challenges.
Latest Patents
Shoko Tsuji holds a patent for a device designed to diagnose environmental stress in plants. The patent, titled "Device for diagnosing environmental stress in plants and method for diagnosing environmental stress," outlines an advanced technology that identifies and diagnoses the environmental stress state of plants. The device comprises a measurement light source, an induction light source, and a transmitted light detector. The measurement light source radiates two types of measurement light to a plant sample, while the induction light source provides photosynthesis-inducing light. The transmitted light detector captures the light that passes through the plant sample. The analysis circuit within the device calculates the light absorption difference and utilizes it to diagnose the environmental stress state of the plants.
Career Highlights
Shoko Tsuji has worked with prestigious institutions such as Kyoto University and Kobe University. His research and inventions have contributed to advancements in plant science and environmental monitoring. His work is particularly relevant in the context of agriculture and environmental sustainability.
Collaborations
Shoko Tsuji has collaborated with notable colleagues, including Kentaro Ifuku and Yufen Che. Their combined expertise has furthered research in the field of plant stress diagnosis.
Conclusion
Shoko Tsuji's innovative contributions to diagnosing environmental stress in plants highlight the importance of technology in understanding plant health. His work not only advances scientific knowledge but also has practical implications for agriculture and environmental management.