<resource xmlns:datacite="http://datacite.org/schema/kernel-4">
<creators>
<creator>
<creatorName nameType="Personal">Maria Varaka</creatorName>
<givenName>Maria</givenName>
<familyName>Varaka</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Conrad W. Merkle</creatorName>
<givenName>Conrad W.</givenName>
<familyName>Merkle</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Lucas May</creatorName>
<givenName>Lucas</givenName>
<familyName>May</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Félix Fanjul-Vélez</creatorName>
<givenName>Félix</givenName>
<familyName>Fanjul-Vélez</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Sybren Worm</creatorName>
<givenName>Sybren</givenName>
<familyName>Worm</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Marco Augustin</creatorName>
<givenName>Marco</givenName>
<familyName>Augustin</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Hsiang-Chieh Lee</creatorName>
<givenName>Hsiang-Chieh</givenName>
<familyName>Lee</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Adelheid Wöhrer</creatorName>
<givenName>Adelheid</givenName>
<familyName>Wöhrer</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Martin Glösmann</creatorName>
<givenName>Martin</givenName>
<familyName>Glösmann</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Bernhard Baumann</creatorName>
<givenName>Bernhard</givenName>
<familyName>Baumann</familyName>
</creator>
</creators>
<titles>
<title>Polarization-insensitive optical coherence tomography using pseudo-depolarized reference light for mitigating birefringence-related image artifacts</title>
</titles>
<publisher>Spie</publisher>
<publicationYear>2024</publicationYear>
<descriptions>
<description descriptionType="Other">Optical coherence tomography (OCT) images are prone to image artifacts due to the birefringence of the sample or the optical system when a polarized light source is used for imaging. These artifacts can lead to degraded image quality and diagnostic information.We aim to mitigate these birefringence-related artifacts in OCT images by adding a depolarizer module in the reference arm of the interferometer.We investigated different configurations of liquid crystal patterned retarders as pseudo-depolarizers in the reference arm of OCT setups. We identified the most effective depolarization module layout for polarization artifact suppression for a spectral-domain OCT system based on a Michelson and a Mach-Zehnder interferometer.The performance of our approach was demonstrated in an achromatic quarter-wave plate allowing the selection of a variety of sample polarization states. A substantial improvement of the OCT signal magnitude was observed after placing the optimal depolarizer configuration, reducing the cross-polarization artifact from 5.7 to 1.8 dB and from 8.0 to 1.0 dB below the co-polarized signal for the fiber-based Michelson and Mach-Zehnder setup, respectively. An imaging experiment in the birefringent scleral tissue of a post-mortem alpine marmot eye and a mouse tail specimen further showcased a significant improvement in the detected signal intensity and an enhanced OCT image quality followed by a drastic elimination of the birefringence-related artifacts.Our study presents a simple yet cost-effective technique to mitigate birefringence-related artifacts in OCT imaging. This method can be readily implemented in existing OCT technology and improve the effectiveness of various OCT imaging applications in biomedicine.</description>
</descriptions>
<resourceType resourceTypeGeneral="Text">PDFDocument</resourceType>
<language>eng</language>
<dates>
<date dateType="Created">2025-02-14T09:44:23.836386Z</date>
<date dateType="Issued">2024</date>
</dates>
<subjects>
<subject>Tomography, Optical Coherence Methods</subject>
<subject>Tomography, Optical Coherence Instrumentation</subject>
<subject>Birefringence</subject>
<subject>Artifacts</subject>
<subject>Animals</subject>
<subject>Mice</subject>
<subject>Equipment Design</subject>
<subject>Interferometry Methods</subject>
<subject>Interferometry Instrumentation</subject>
<subject>Image Processing, Computer-Assisted Methods</subject>
</subjects>
<sizes>
<size>5408141 b</size>
</sizes>
<formats>
<format>application/pdf</format>
</formats>
<rightsList>
<rights rightsURI="http://creativecommons.org/licenses/by/4.0/">http://creativecommons.org/licenses/by/4.0/</rights>
</rightsList>
</resource>
