Deep Biomechanically-Guided Interpolation for Keypoint-Based Brain Shift Registration

Aug 19, 2025 · Research Publication · PAL Robotics · Humanoid

Accurate compensation of brain shift is critical for maintaining the reliability of neuronavigation during neurosurgery. While keypoint-based registration methods offer robustness to large deformations and topological changes, they typically rely on simple geometric interpolators that ignore tissue biomechanics to create dense displacement fields.

PAL Robotics company media
Company media · PAL Robotics
  • Experiments use TIAGo as the physical evaluation platform.
  • The reported results provide an independent evaluation on TIAGo hardware.

Develops service and humanoid robots for research, industrial, and public-facing environments, with a focus on modular platforms and long-term deployment in real-world settings.