Fiber optics is the most promising technology for distributed temperature sensing. The paper investigates the characterization of probes based on single or multiplexed fiber Bragg gratings, specifically conceived to evaluate the temperature distribution in applications that imply large temperature gradients, such as in laser induced thermal treatments of solid tumors. A setup for the characterization of fiber Bragg grating sensors in non uniform temperature conditions is described and examples of applications in case that mimic actual working conditions are reported.

Characterization of fiber optic distributed temperature sensors for tissue laser ablation / Gassino, Riccardo; Vallan, Alberto; Perrone, Guido; Konstantaki, M.; Pissadakis, S.. - (2017), pp. 1-5. (Intervento presentato al convegno 2017 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) tenutosi a Torino, Italy nel 22-25 May 2017) [10.1109/I2MTC.2017.7969862].

Characterization of fiber optic distributed temperature sensors for tissue laser ablation

GASSINO, RICCARDO;VALLAN, Alberto;PERRONE, Guido;
2017

Abstract

Fiber optics is the most promising technology for distributed temperature sensing. The paper investigates the characterization of probes based on single or multiplexed fiber Bragg gratings, specifically conceived to evaluate the temperature distribution in applications that imply large temperature gradients, such as in laser induced thermal treatments of solid tumors. A setup for the characterization of fiber Bragg grating sensors in non uniform temperature conditions is described and examples of applications in case that mimic actual working conditions are reported.
2017
978-1-5090-3596-0
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2676351
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