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Stretchable Graphene Pressure Sensors with Shar-Pei-like Hierarchical Wrinkles for Collision-Aware Surgical Robotics

Ting‐Hsiang Chang, Yuan Tian, Changsheng Li, Xiaoyi Gu, Kerui Li, Haitao Yang, Parita Sanghani, Chwee Ming Lim, Hongliang Ren, Po‐Yen Chen

Year
2019
Citations
127

Abstract

at 0, 30, and 50% stretching states, respectively) along with distinguishable and reduced stretching responsiveness (a small GF ∼0.2 under 40% strains). The stretchable pressure sensors were next integrated with two surgical robots for the transoral robotic surgery procedure. During the cadaveric testing, the rGO sensors can detect the robot-tissue contacts under joint stretches in real time to enhance the surgeon's awareness for collision avoidance. The stretchable rGO pressure sensor that is highly sensitive under large strains provides great potential in the fields of wearable sensing and collision-aware humanoid robots to improve the human-machine interactions.

Keywords

Materials scienceGrapheneRoboticsArtificial intelligencePressure sensorCollisionNanotechnologyRobotBiomimeticsMechanical engineering

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