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Focused ultrasound robotic system for very small bore magnetic resonance imaging

Christakis Damianou, Marinos Giannakou, Nikolas Evripidou, Stefan Kegel, Peter E. Huber, Juergen Jenne

Year
2020
Citations
8
Access
Open access

Abstract

BACKGROUND: A magnetic resonance imaging (MRI) compatible robotic system for focused ultrasound was developed for small animal like mice or rats that fits into a 9.4 T MRI scanner (Bruker Biospec 9420, Bruker Biospin, Ettlingen, Germany). The robotic system includes two computer-controlled linear stages. MATERIALS AND METHODS: The robotic system was evaluated in a mouse-shaped, real-size agar-based mimicking material, which has similar acoustical properties as soft tissues. The agar content was 6% weight per volume (w/v), 4% w/v silica while the rest was degassed water. The transducer used has a diameter of 4 cm, operates with 2.6 MHz and focuses energy at 5 cm. RESULTS: The MRI compatibility of the robotic system was evaluated in a 9.4 T small animal scanner. The efficacy of the ultrasonic transducer was evaluated in the mimicking material using temperature measurements. CONCLUSIONS: The proposed robotic system can be utilized in a 9.4 T small animal MRI scanner. The proposed system is functional, compact and simple thus providing a useful tool for preclinical research in mice and rats.

Keywords

ScannerMagnetic resonance imagingUltrasoundTransducerBiomedical engineeringUltrasonic sensorMaterials scienceComputer scienceClinical imagingUltrasonography

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