Papers

15

Total Citations

648

H-Index

10

About

M. Shimojo is a pioneering researcher in the field of tactile sensing and robotic perception, whose work has fundamentally advanced how robots interact with and interpret their physical environment. Best known for developing innovative tactile sensor technologies, Shimojo's most influential contribution — a flexible sheet-type tactile sensor using pressure-conductive rubber with stitched electrical wires — has garnered over 420 citations since its 2004 publication, establishing it as a landmark reference in the field. This thin, durable, three-dimensional sensor design addressed critical challenges in creating robots capable of human-like touch sensitivity. Shimojo's research spans an impressive breadth of robotics challenges, including slip detection for adaptive robotic gripping, zero moment point (ZMP) sensing for bipedal locomotion, and spatial filtering tactile systems inspired by biological nervous systems. His development of mixed-signal LSI circuits for tactile data processing further demonstrates his systems-level thinking, tackling the complex wiring challenges inherent in full-body robotic sensing. Additional contributions to piezoelectric flapping wing mechanisms and human-robot collision safety underscore his versatility. With cumulative citations well exceeding 600 across his major works, Shimojo's research continues to shape the development of safe, perceptive robots designed to coexist alongside humans.

Research Focus

Key Achievements

10
H-Index
15
Papers
648
Total Citations
43
Avg Citations/Paper
🏆 Most Cited Paper
A Tactile Sensor Sheet Using Pressure Conductive Rubber With Electrical-Wires Stitched Method
421 citations · 2004
📈 Most Prolific Year: 2009 (4 Papers)
🤝 Key Collaborators: 23
🏛 Institutions: University of Electro-Communications, National Institute of Advanced Industrial Science and Technology

Top Papers

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    A ZMP sensor for a biped robot
    31 citations · 2006
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Key Collaborators

Contact & Links

Available for collaboration
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