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Single twistable tendon-driven continuum robots

delete2026-07-04
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OA
AI
J
Jiewen Lai
Y
Yanjun Liu
T
Tian-Ao Ren
Y
Yan Ma
T
Tao Zhang
J
Jeremy Yuen‐Chun Teoh
M
Mark R. Cutkosky
H
Hongliang Ren *
DOI:10.1038/s41467-026-74225-3delete
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Abstract

Abstract

En 中文
Tendon-driven continuum robots with spatial manipulability face fundamental challenges in miniaturization, stemming from the space required to accommodate multiple actuation tendons. Conventional multi-tendon designs create an inherent trade-off between miniaturization, 3D manipulability, and force output. Here, we introduce a class of continuum robots that achieves controllable body twist and full omnidirectional motion driven by pushing, pulling, and twisting a single tendon, breaking this long-standing design constraint. The resulting robot features an outer diameter of 2.0-3.5 mm and a circumferential hollow ratio exceeding 57%, nearly doubling spatial utilization efficiency over multi-tendon designs. Compared to conventional mechanisms, manipulability improves by over 1000-fold while retaining at least 70% of tip force across all directions. We derive the kinematics for this robot class and provide an open-source simulator. We demonstrate capabilities in teleoperation, navigation in tortuous environments, chopstick-like continuum grippers for in-gripper manipulation, and potential medical applications. Our design redefines actuation paradigms for tendon-driven continuum robots. Miniature continuum robots achieve omnidirectional motion by pushing, pulling, and twisting one eccentric tendon, enabling dexterous teleoperation and tortuous-path navigation and pointing to next-generation surgical actuators.
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Journal

Nature Communications cover
Nature Communications
IF:
15.7
Papers:
9.2W
Citations:
91.2W

Organization

S
stanford university
Scholars:
1.0W
Papers: 4.1K
Citations: 0
C
CUHK
Scholars:
27
Papers: 9
Citations: 0