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SURGICAL

Imaging skins: stretchable and conformable on-organ beta particle detectors for radioguided surgery

Solène Dietsch, Lukas Lindenroth, Agostino Stilli, Danail Stoyanov

Year
2023
Citations
3
Access
Open access

Abstract

Abstract While radioguided surgery (RGS) traditionally relied on detecting gamma rays, direct detection of beta particles could facilitate the detection of tumour margins intraoperatively by reducing radiation noise emanating from distant organs, thereby improving the signal-to-noise ratio of the imaging technique. In addition, most existing beta detectors do not offer surface sensing or imaging capabilities. Therefore, we explore the concept of a stretchable scintillator to detect beta-particles emitting radiotracers that would be directly deployed on the targeted organ. Such detectors, which we refer to as imaging skins , would work as indirect radiation detectors made of light-emitting agents and biocompatible stretchable material. Our vision is to detect scintillation using standard endoscopes routinely employed in minimally invasive surgery. Moreover, surgical robotic systems would ideally be used to apply the imaging skins, allowing for precise control of each component, thereby improving positioning and task repeatability. While still in the exploratory stages, this innovative approach has the potential to improve the detection of tumour margins during RGS by enabling real-time imaging, ultimately improving surgical outcomes.

Keywords

DetectorConformable matrixScintillatorScintillationNoise (video)Computer scienceMedical physicsParticle detectorOpticsPhysics

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