Papers
1
Total Citations
11
H-Index
1
About
Noga Rosen is a rising innovator in biomechanical engineering and additive manufacturing, whose work is redefining the design of custom orthotic devices. Her primary research focuses on the intersection of 3D-printing technology and personalized healthcare, specifically targeting the fabrication of insoles with locally variable mechanical properties. Rosen’s major contribution lies in developing a novel “gradual variable stiffness” approach using a 3D-printed spacer technique, which overcomes the limitations of conventional methods—such as slow production, thick strands, and abrupt stiffness transitions. This breakthrough enables more effective redistribution of plantar pressure, offering a new paradigm for comfort and therapeutic support. Her most-cited paper, published in 2024, has already garnered 11 citations, signaling strong early impact in a rapidly evolving field. Rosen’s work is particularly notable for its practical implications: it promises faster, more precise, and more comfortable orthotic solutions for patients with foot disorders. As a researcher, she stands at the forefront of merging advanced manufacturing with clinical biomechanics, making her a key figure to watch for students and professionals interested in the future of wearable medical devices.
Research Focus
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Top Papers
- 1