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Development and preliminary evaluation of an actuated MRI-compatible robotic device for MRI-guided prostate intervention

Axel Krieger, Iulian Iordachita, Sang‐Eun Song, Nathan B. Cho, Peter Guion, Gábor Fichtinger, Louis L. Whitcomb

Year
2010
Citations
40

Abstract

This paper reports the design, development, and magnetic resonance imaging (MRI) compatibility evaluation of an actuated transrectal prostate robot for MRI-guided intervention. The robot employs an actuated needle guide with the goal of reducing interventional procedure times and increasing needle placement accuracy. The design of the robot, employing piezo-ceramic-motor actuated needle guide positioning and manual needle insertion, is reported. Results of a MRI compatibility study show no reduction of MRI image signal-to-noise-ratio (SNR) with the motors disabled and a 40% to 60% reduction in SNR with the motors enabled. The addition of radio-frequency (RF) shielding is shown to significantly reduce image SNR degradation due to the presence of the robotic device.

Keywords

Magnetic resonance imagingRobotComputer scienceElectromagnetic shieldingCompatibility (geochemistry)Biomedical engineeringSimulationArtificial intelligenceMaterials scienceMedicine

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