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Three-dimensional optical phantom and its application in photodynamic therapy

✍ Scribed by Bays, Roland; Wagnières, Georges; Robert, Dimitri; Theumann, Jean-François; Vitkin, Alex; Savary, Jean-François; Monnier, Philippe; van den Bergh, Hubert


Publisher
John Wiley and Sons
Year
1997
Tongue
English
Weight
279 KB
Volume
21
Category
Article
ISSN
0196-8092

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✦ Synopsis


Background and objective:

A technique to manufacture a stable, reproducible three-dimensional optical phantom is presented. this phantom reproduces the tissue's optical properties as well as the geometry and, to some extent, the mechanical properties of the organ concerned. easy to make and to handle, this phantom is a useful tool for numerous medical applications involving light interaction with biological tissues.

Study design/materials and methods:

The phantom is based on a transparent two-component silicone, which is molded into the desired shape and cured at room temperature. specific optical properties are obtained by adding scatterers (al2o3 particles or polystyrene microspheres) and absorbers (dyes or pigments). a method to measure the radiant energy fluence rate in the phantom is described. this method is based on a small isotropic optical detector.

Results:

A three-dimensional phantom of the bronchial tree is presented. this phantom is used for testing new light distributors designed for photodynamic therapy of the bronchi.

Conclusion:

The proposed technique allows one to produce a stable three-dimensional phantom with accurately predictable optical properties.


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