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Distributed 2D temperature sensing during nanoparticles assisted laser ablation by means of high-scattering fiber sensors.


ABSTRACT: The high demand in effective and minimally invasive cancer treatments, namely thermal ablation, leads to the demand for real-time multi-dimensional thermometry to evaluate the treatment effectiveness, which can be also assisted by the use of nanoparticles. We report the results of 20-nm gold and magnetic iron oxide nanoparticles-assisted laser ablation on a porcine liver phantom. The experimental set-up consisting of high-scattering nanoparticle-doped fibers was operated by means of a scattering-level multiplexing arrangement and interrogated via optical backscattered reflectometry, together with a solid-state laser diode operating at 980 nm. The multiplexed 2-dimensional fiber arrangement based on nanoparticle-doped fibers allowed an accurate superficial thermal map detected in real-time.

SUBMITTER: Ashikbayeva Z 

PROVIDER: S-EPMC7387462 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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Distributed 2D temperature sensing during nanoparticles assisted laser ablation by means of high-scattering fiber sensors.

Ashikbayeva Zhannat Z   Aitkulov Arman A   Jelbuldina Madina M   Issatayeva Aizhan A   Beisenova Aidana A   Molardi Carlo C   Saccomandi Paola P   Blanc Wilfried W   Inglezakis Vassilis J VJ   Tosi Daniele D  

Scientific reports 20200728 1


The high demand in effective and minimally invasive cancer treatments, namely thermal ablation, leads to the demand for real-time multi-dimensional thermometry to evaluate the treatment effectiveness, which can be also assisted by the use of nanoparticles. We report the results of 20-nm gold and magnetic iron oxide nanoparticles-assisted laser ablation on a porcine liver phantom. The experimental set-up consisting of high-scattering nanoparticle-doped fibers was operated by means of a scattering  ...[more]

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