Yuxin Tong
Papers
4
Total Citations
109
H-Index
3
About
Yuxin Tong is a pioneering researcher at the intersection of advanced manufacturing, soft robotics, and intelligent sensing systems. Their work spans the development of stretchable multimodal fiber sensors, 3D-printed microelectromechanical systems (MEMS), and cutting-edge neural interface devices. Tong’s most impactful contribution is the thermally drawn stretchable electrical and optical fiber sensors (57 citations), which enable simultaneous strain, temperature, and pressure sensing under extreme deformation—a breakthrough for wearable electronics and biomedical implants. They also advanced additive manufacturing by creating the first 3D-printed microfluidic MEMS for acoustofluidic applications (39 citations), overcoming traditional 2D fabrication limitations. Notably, Tong developed a hybrid 3D printing and robotic-assisted embedding method for fabricating nerve cuffs with integrated locking mechanisms, directly addressing challenges in peripheral nerve repair. Their recent work on GaRField++ introduces reinforced Gaussian radiance fields for large-scale robot view synthesis, pushing the boundaries of embodied AI. With over 100 total citations and a portfolio spanning fundamental fabrication science to applied neural engineering, Tong’s research continues to shape the future of soft, stretchable, and intelligent systems for healthcare and robotics.
Research Focus
Key Achievements
Top Papers
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