Sensock: 3D Foot Reconstruction with Flexible Sensors
Authors
Capturing 3D foot models is important for applications such as manufacturing customized shoes and creating clubfoot orthotics. In this paper, we propose a novel prototype, Sensock, to offer a fully wearable solution for the task of 3D foot reconstruction. The prototype consists of four soft stretchable sensors, made from silk fibroin yarn. We identify four characteristic foot girths based on the existing knowledge of foot anatomy, and measure their lengths with the resistance value of the stretchable sensors. A learning-based model is trained offline and maps the foot girths to the corresponding 3D foot shapes. We compare our method with existing solutions using red–green–blue (RGB) or RGBD (RGB-depth) cameras, and show the advantages of our method in terms of both efficiency and accuracy. In the user experiment, we find that the relative error of Sensock is lower than 0.55%. It performs consistently across different trials and is considered comfortable and suitable for long-term wearing.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 75%
Digital Joinery For Hybrid Carpentry
CHI '18· Circuit Making & Hardware Prototyping +1
- 75%
RFTouchPads: Batteryless and Wireless Modular Touch Sensor Pads Based on RFID
UIST '19· Circuit Making & Hardware Prototyping +1
- 60%
Print-A-Sketch: A Handheld Printer for Physical Sketching of Circuits and Sensors on Everyday Surfaces
CHI '22· Circuit Making & Hardware Prototyping +1
- 60%
Wire Your Way: Hardware-Contextualized Guidance and In-situ Tests for Personalized Circuit Prototyping
CHI '26· Circuit Making & Hardware Prototyping +2
- 60%
Assembly-aware Design of Printable Electromechanical Devices
UIST '18· Circuit Making & Hardware Prototyping +1
Based on Jaccard similarity of research subtopics & professions (≥60%)