Jennifer Landry
Papers
1
Total Citations
167
H-Index
1
About
Jennifer Landry is a pioneer in the field of soft robotics, with a focus on additive manufacturing and integrated fluidic control systems. Her landmark 2021 paper, “Fully 3D-printed soft robots with integrated fluidic circuitry,” has garnered 167 citations and introduced a groundbreaking method for producing unified soft robots in a single print run using PolyJet three-dimensional printing. This work addresses a critical challenge in soft robotics—the complex control of fluidics—by enabling the direct fabrication of robots with embedded circuitry, eliminating the need for post-assembly. Landry’s contributions have significantly advanced the scalability and accessibility of soft robotic systems, making them more practical for applications in biomedical devices, search-and-rescue, and human-machine interaction. Her research bridges materials science, mechanical engineering, and robotics, offering a streamlined approach that has inspired further innovations in 3D-printed actuation and sensing. Recognized for her interdisciplinary impact, Landry continues to shape the future of autonomous, compliant machines, with her work serving as a foundational reference for students and researchers exploring next-generation soft robotic design.
Research Focus
Key Achievements
Top Papers
- 1Fully 3D-printed soft robots with integrated fluidic circuitry167 citations · 2021