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Xinyuan Huang

3 accepted papers

2025

S3D: A Spatial Steerable Surgical Drilling Framework for Robotic Spinal Fixation Procedures

IROS 2025

In this paper, we introduce S<sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">3</sup>D: A Spatial Steerable Surgical Drilling Framework for Robotic Spinal Fixation Procedures. S<sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w

Cited by 4SourceScholar
2024

Quantitative Evaluation of Curved BioPrinted Constructs of an in Situ Robotic System Towards Treatment of Volumetric Muscle Loss

RA-L 2024

Tissue engineering techniques and particularly <i>in situ</i> bioprinting using handheld devices and robotic systems have recently demonstrated promising outcomes to address volumetric muscle loss injuries. Nevertheless, these approaches suffer from insufficient printing precision and/or lack of qua

Cited by 2SourceScholar
2022

Independent SE(3)-Equivariant Models for End-to-End Rigid Protein Docking

ICLR 2022spotlight

Protein complex formation is a central problem in biology, being involved in most of the cell's processes, and essential for applications, e.g. drug design or protein engineering. We tackle rigid body protein-protein docking, i.e., computationally predicting the 3D structure of a protein-protein com…