Papers
21
Total Citations
965
H-Index
14
About
Cameron J. Hohimer is a robotics and biomedical engineering researcher whose work spans soft robotics, wearable assistive technologies, and agricultural automation. He has made significant contributions to the design and implementation of soft pneumatic systems, particularly for rehabilitation and human augmentation. His landmark 2020 study on 3D-printed conductive thermoplastic polyurethane/carbon nanotube composites demonstrated novel sensing capabilities in soft actuators, garnering 137 citations and advancing the field of smart material integration. Hohimer's work on inflatable soft wearable robots has addressed pressing clinical needs, including reducing therapist fatigue in stroke rehabilitation (96 citations) and restoring arm function for individuals with ALS (89 citations), illustrating his commitment to translating robotics into meaningful patient outcomes. His textile-based pneumatic actuator research (88 citations) has further shaped design methodologies for wearable systems, while his industrial exosuit work tackles shoulder injury prevention in factory environments. Parallel to this, Hohimer has pioneered robotic apple harvesting systems, contributing foundational proof-of-concept studies and dual-robot coordination strategies that address critical labor shortages in agriculture. With over 830 cumulative citations, his interdisciplinary research leaves a compelling impact across rehabilitation engineering, industrial robotics, and precision agriculture.
Research Focus
Key Achievements
Top Papers
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- 5Unfolding Textile-Based Pneumatic Actuators for Wearable Applications88 citations · 2021
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- 7Proof-of-concept of a robotic apple harvester72 citations · 2016
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- 10Dual Robot Coordination for Apple Harvesting45 citations · 2017