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May 10, 2026International Journal of Computer Assisted Radiology and Surgery0 citationsOpen Access

Intraoperative fusion of models and data for robust distance sensing

MBMarius BrielLHLudwig HaideTWTobias Weber

Key Points

  • The aim is to enhance the robustness of distance measurements in microsurgery using optical sensors.
  • Developed a pipeline integrating a rapid search algorithm for relevant neighboring data points.
  • Utilized geometric and non-geometric techniques for accurate local tissue structure modeling.
  • Implemented a fusion of measurement and model to mitigate disturbances in data.
  • Achieved mean absolute error of less than 0.02 mm using local spline fit for distance prediction.
  • Demonstrated up to 89% error reduction in distance sensing compared to sensor-only methods.
  • Results indicate improved reliability of optical sensors for delicate ophthalmic procedures.

Abstract

PURPOSE: Instrument-integrated optical sensors are gaining popularity in microsurgery due to their ability to provide accurate measurements of instrument-to-tissue distances, enabling precise instrument control. However, obstructions in the optical path can result in measurement errors. In this work, we propose a method to improve robustness of distance information from sensorized microsurgical instruments. METHODS: Our pipeline integrates a rapid search algorithm to identify relevant neighboring data points, as well as geometric and non-geometric techniques to accurately model the local tissue structure. Additionally, we implement a fusion of measurement and model to identify and overcome disturbances, e.g., obstructions from surgical instruments or semantic segmentation errors. RESULTS: Our simulation examines the effect of different modeling parameters and techniques on distance prediction, yielding a mean absolute error of less than 0.02 mm when using the local spline fit. Experiments in ex vivo human eyes show that our pipeline achieves up to 89 % error reduction when compared to sensor only. CONCLUSION: Our method improves the reliability of instrument-integrated optical sensors. This work could enable distance-based instrument control in challenging conditions, thereby enhancing surgical precision in delicate ophthalmic procedures. Our approach can be generalized to any surgery with sensorized instruments and beyond.

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Cite This Study

Briel et al. (2026) studied this question.

synapsesocial.com/papers/6a00217ac8f74e3340f9c683https://doi.org/10.1007/s11548-026-03615-1
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