Papers
1
Total Citations
4
H-Index
1
About
K. Rinfray’s research focuses on the intersection of rehabilitation robotics and neurological recovery, with a particular emphasis on improving mobility and balance in patients with neurological injuries. Their most-cited work, a preliminary study on the Robo-K exoskeleton system, demonstrated early promise in enhancing walking and balance outcomes for individuals affected by conditions such as stroke or spinal cord injury. Although the study has garnered modest attention with 4 citations, it represents a foundational contribution to the growing field of robotic-assisted therapy, offering a proof-of-concept for integrating automated support into clinical rehabilitation protocols. Rinfray’s work underscores the potential of adaptive robotics to address critical gaps in neurorehabilitation, particularly for patients with limited motor function. While their citation count reflects the emerging nature of this research area, the study’s practical implications—such as reducing fall risk and improving gait symmetry—highlight its relevance for clinicians and engineers developing next-generation assistive devices. Rinfray’s contributions align with broader efforts to personalize rehabilitation through technology, making their work a stepping stone for future innovations in human-robot interaction for therapeutic use.
Research Focus
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Top Papers
- 1