English

Feasibility of a markerless tracking system based on optical coherence tomography

Medical Physics 2019-01-15 v2 Image and Video Processing

Abstract

Clinical tracking systems are popular but typically require specific tracking markers. During the last years, scanning speed of optical coherence tomography (OCT) has increased to A-scan rates above 1 MHz allowing to acquire volume scans of moving objects. Thorefore, we propose a markerless tracking system based on OCT to obtain small volumetric images including information of sub-surface structures at high spatio-temporal resolution. In contrast to conventional vision based approaches, this allows identifying natural landmarks even for smooth and homogeneous surfaces. We describe the optomechanical setup and process flow to evaluate OCT volumes for translations and accordingly adjust the position of the field-of-view to follow moving samples. While our current setup is still preliminary, we demonstrate tracking of motion transversal to the OCT beam of up to 20 mm/s with errors around 0.2 mm and even better for some scenarios. Tracking is evaluated on a clearly structured and on a homogeneous phantom as well as on actual tissue samples. The results show that OCT is promising for fast and precise tracking of smooth, monochromatic objects in medical scenarios.

Keywords

Cite

@article{arxiv.1810.12355,
  title  = {Feasibility of a markerless tracking system based on optical coherence tomography},
  author = {Matthias Schlüter and Christoph Otte and Thore Saathoff and Nils Gessert and Alexander Schlaefer},
  journal= {arXiv preprint arXiv:1810.12355},
  year   = {2019}
}

Comments

Accepted at SPIE Medical Imaging 2019

R2 v1 2026-06-23T04:56:37.742Z