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                <front>
                    <journal-meta>
                    <journal-id journal-id-type="publisher-id">cic</journal-id>
                    <journal-title>Color and Imaging Conference</journal-title>
                    <issn pub-type="ppub">2166-9635</issn><issn pub-type="epub">2166-9635</issn>
                    <publisher>
                        <publisher-name>Society for Imaging Science and Technology</publisher-name>
                        <publisher-loc>IS&amp;T 7003 Kilworth Lane, Springfield, VA 22151 USA</publisher-loc>
                    </publisher>
                    </journal-meta>
                    <article-meta>
                    <article-id pub-id-type="doi">10.2352/CIC.2023.31.1.40</article-id>
                    <article-id pub-id-type="publisher-id">38</article-id>
                    <article-categories>
                        <subj-group>
                        <subject>Proceedings Paper</subject>
                        </subj-group>
                    </article-categories>
                    <title-group>
                        <article-title>The Influence of Interreflections on Shape from Fluorescence</article-title>
                    </title-group><contrib-group content-type="all"><contrib contrib-type="author"><name>
                            <surname>Ciortan</surname>
                            <given-names>Irina-Mihaela </given-names>
                           </name> <xref ref-type="aff" rid="aff1author1"/></contrib><aff id="aff1author1">Norwegian University of Science and Technology, Norway</aff></contrib-group><contrib-group content-type="all"><contrib contrib-type="author"><name>
                            <surname>George</surname>
                            <given-names>Sony </given-names>
                           </name> <xref ref-type="aff" rid="aff1author2"/></contrib><aff id="aff1author2">Norwegian University of Science and Technology, Norway</aff></contrib-group><contrib-group content-type="all"><contrib contrib-type="author"><name>
                            <surname>Hardeberg</surname>
                            <given-names>Jon Yngve</given-names>
                           </name> <xref ref-type="aff" rid="aff1author3"/></contrib><aff id="aff1author3">Norwegian University of Science and Technology, Norway</aff></contrib-group><abstract>
                    <title>Abstract</title>
                    <p>Fluorescence is an optical phenomenon, specific to certain materials that absorb light with higher energy and re-emit it at lower energy, with unnoticeable time latency. Due to this so-called Stokes shift, fluorescent materials pose several challenges in image capture, where usually a filtering setup is required at the illumination and/or sensing ends. Nevertheless, fluorescence emission is diffuse, which was previously used in shape from photometry models. In this work, we target the shape from fluorescence method for a specific category of materials: those with overlapping reflectance and fluorescence signals. In particular, we investigate how the self-interreflections (light bounces off a surface that get re-reflected by the surface itself) change the appearance of scenes with such fluorescent materials and how this affects the shape estimation with a photometric stereo model. To avoid instrumental artifacts inherent in real image capture setups, we perform our analysis on a synthetic dataset of multi-light images, generated with a physically-based spectral renderer that supports fluorescence.</p>
                    </abstract><pub-date>
                        <day>13</day>
                        <month>11</month>
                        <year>2023</year>
                        </pub-date><volume>31</volume>
                    <issue-acronym>CIC</issue-acronym>
                    <issue-title>31st Color and Imaging Conference</issue-title>
                    <issue seq="38">1</issue>
                    <fpage>215</fpage>
                    <lpage>220</lpage>
                    <permissions>
                         <copyright-statement>©2023 Society for Imaging Science and Technology </copyright-statement>
                        <copyright-year>2023</copyright-year>
                    </permissions><kwd-group><kwd>fluorescence synthesis</kwd><kwd>spectral rendering</kwd><kwd>interreflections</kwd><kwd>photometric stereo</kwd></kwd-group></article-meta>
                </front>
                </article>