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Using rotation for steerable needle detection in 3D color-Doppler ultrasound images

Paul Mignon, Philippe Poignet, Jocelyne Troccaz

Year
2015
Citations
5

Abstract

This paper demonstrates a new way to detect needles in 3D color-Doppler volumes of biological tissues. It uses rotation to generate vibrations of a needle using an existing robotic brachytherapy system. The results of our detection for color-Doppler and B-Mode ultrasound are compared to a needle location reference given by robot odometry and robot ultrasound calibration. Average errors between detection and reference are 5.8 mm on needle tip for B-Mode images and 2.17 mm for color-Doppler images. These results show that color-Doppler imaging leads to more robust needle detection in noisy environment with poor needle visibility or when needle interacts with other objects.

Keywords

Computer visionArtificial intelligenceDoppler effectVisibilityCalibrationComputer scienceUltrasoundRotation (mathematics)Color dopplerFiducial marker

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