In vivo photoacoustic tomography of porcine abdominal organs using Fabry–Pérot sensing integrated platform
Damien Gasteau, Alexis Vrignaud, Arnaud Biallais, Fabrice Richard, Gilles Blancho, Julien Branchereau, Benoît Mesnard

TL;DR
This study demonstrates a new photoacoustic imaging system for visualizing blood vessels in pig abdominal organs during surgery, without using harmful radiation or dyes.
Contribution
The first in vivo demonstration of a fully integrated photoacoustic tomography system using a Fabry–Pérot interferometer for abdominal organ imaging in a porcine model.
Findings
The system successfully imaged both hollow and solid organs with consistent 3D image quality.
Blood vessels as small as 100 µm in diameter were clearly visualized without causing tissue damage.
The system is autonomously operable by surgical teams and suitable for intraoperative use.
Abstract
To evaluate in vivo a fully integrated photoacoustic tomography imaging system based on Fabry–Pérot ultrasound sensing method applied on porcine abdominal organs. This approach could be used by surgeons during intraoperative clinical procedures. The photoacoustic imaging system was fully integrated into a single structure, and the detection technology was based on a Fabry–Pérot interferometer. The detection probe connected to the imaging system was applied directly to the organs of a male “large white” Sus scrofa pig weighing 80 kg, either manually or using a stand, with or without a gel interface. All experiments were performed in compliance with EU Directive 2010/63/EU on animal experimentation (APAFiS #31507). All intraperitoneal and retroperitoneal organs were evaluated using photoacoustic imaging. The evaluation of both hollow and solid organs was successfully conducted with…
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Taxonomy
TopicsPhotoacoustic and Ultrasonic Imaging · Thermography and Photoacoustic Techniques · Infrared Thermography in Medicine
