We propose and validate the design of inhomogeneous phantoms for diffuse optical imaging purposes using totally absorbing objects embedded in a diffusive medium. From Monte Carlo simulations, we show that a given or desired perturbation strength caused by an realistic absorbing inhomogeneity of a certain absorption and volume can be approximately mimicked by a small totally absorbing object of a so-called Equivalent Black Volume (Equivalence Relation). This concept can be useful to design realistic inhomogeneous phantoms using a set of black objects with different volumes. Further, it permits to grade physiological or pathological changes on a reproducible scale of equivalent black volumes, thus facilitating the performance assessment of clinical instruments. We have also provided a plot to derive the Equivalent Black Volume yielding the same effect of a realistic absorption object. © 2013 Copyright SPIE.

Realistic phantoms for diffuse optical imaging using totally absorbing objects

Pifferi A;Spinelli L;
2013

Abstract

We propose and validate the design of inhomogeneous phantoms for diffuse optical imaging purposes using totally absorbing objects embedded in a diffusive medium. From Monte Carlo simulations, we show that a given or desired perturbation strength caused by an realistic absorbing inhomogeneity of a certain absorption and volume can be approximately mimicked by a small totally absorbing object of a so-called Equivalent Black Volume (Equivalence Relation). This concept can be useful to design realistic inhomogeneous phantoms using a set of black objects with different volumes. Further, it permits to grade physiological or pathological changes on a reproducible scale of equivalent black volumes, thus facilitating the performance assessment of clinical instruments. We have also provided a plot to derive the Equivalent Black Volume yielding the same effect of a realistic absorption object. © 2013 Copyright SPIE.
2013
Inglese
Design and Performance Validation of Phantoms Used in Conjunction with Optical Measurement of Tissue V
8583
http://www.scopus.com/inward/record.url?eid=2-s2.0-84878053990&partnerID=q2rCbXpz
3 - 6 February 2013
San Francisco, CA; United States
Monte Carlo simulations
Optical inhomogeneous phantom
Relation Principle
9
none
Martelli, F; Pifferi, A; Contini, D; Spinelli, L; Torricelli, A; Wabnitz, H; Macdonald, R; Sassaroli, A; Zaccanti, G
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/270121
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