Open Access
3 September 2015 Label-free characterization of vitrification-induced morphology changes in single-cell embryos with full-field optical coherence tomography
Livia Zarnescu, Michael C. Leung, Michael Abeyta, Helge M. Sudkamp, Thomas M. Baer, Barry Behr, Audrey K. Ellerbee
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Abstract
Vitrification is an increasingly popular method of embryo cryopreservation that is used in assisted reproductive technology. Although vitrification has high post-thaw survival rates compared to other freezing techniques, its long-term effects on embryo development are still poorly understood. We demonstrate an application of full-field optical coherence tomography (FF-OCT) to visualize the effects of vitrification on live single-cell (2 pronuclear) mouse embryos without harmful labels. Using FF-OCT, we observed that vitrification causes a significant increase in the aggregation of structures within the embryo cytoplasm, consistent with reports in literature based on fluorescence techniques. We quantify the degree of aggregation with an objective metric, the cytoplasmic aggregation (CA) score, and observe a high degree of correlation between the CA scores of FF-OCT images of embryos and of fluorescence images of their mitochondria. Our results indicate that FF-OCT shows promise as a label-free assessment of the effects of vitrification on embryo mitochondria distribution. The CA score provides a quantitative metric to describe the degree to which embryos have been affected by vitrification and could aid clinicians in selecting embryos for transfer.
© 2015 Society of Photo-Optical Instrumentation Engineers (SPIE) 1083-3668/2015/$25.00 © 2015 SPIE
Livia Zarnescu, Michael C. Leung, Michael Abeyta, Helge M. Sudkamp, Thomas M. Baer, Barry Behr, and Audrey K. Ellerbee "Label-free characterization of vitrification-induced morphology changes in single-cell embryos with full-field optical coherence tomography," Journal of Biomedical Optics 20(9), 096004 (3 September 2015). https://doi.org/10.1117/1.JBO.20.9.096004
Published: 3 September 2015
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CITATIONS
Cited by 9 scholarly publications.
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KEYWORDS
Luminescence

Optical coherence tomography

3D image processing

Microscopes

Image processing

Imaging systems

Visualization

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