ROJul 14

LapSurgie: Humanoid Robots Performing Surgery via Teleoperated Handheld Laparoscopy

arXiv:2510.035294.72 citationsh-index: 9
Predicted impact top 68% in RO · last 90 daysOriginality Incremental advance
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This work addresses the challenge of making robotic laparoscopic surgery deployable in low-resource settings by using humanoid robots that operate in existing operating rooms without infrastructure modifications.

LapSurgie introduces the first humanoid-robot-based laparoscopic teleoperation framework, enabling precise control of off-the-shelf surgical tools without additional setup. A user study demonstrates its effectiveness, providing initial evidence for deploying humanoid robots in laparoscopic procedures.

Robotic laparoscopic surgery has gained increasing attention in recent years for its potential to deliver more efficient and precise minimally invasive procedures. However, adoption of surgical robotic platforms remains largely confined to high-resource medical centers, exacerbating healthcare disparities in rural and low-resource regions. To close this gap, a range of solutions has been explored, from remote mentorship to fully remote telesurgery. Yet, the practical deployment of surgical robotic systems to underserved communities remains an unsolved challenge. Humanoid systems offer a promising path toward deployability, as they can directly operate in environments designed for humans without extensive infrastructure modifications -- including operating rooms. In this work, we introduce LapSurgie, the first humanoid-robot-based laparoscopic teleoperation framework. The system leverages an inverse-mapping strategy for manual-wristed laparoscopic instruments that abides to remote center-of-motion constraints, enabling precise hand-to-tool control of off-the-shelf surgical laparoscopic tools without additional setup requirements. A control console equipped with a stereo vision system provides real-time visual feedback. Finally, a comprehensive user study across platforms demonstrates the effectiveness of the proposed framework and provides initial evidence for the feasibility of deploying humanoid robots in laparoscopic procedures.

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