Ultra-sensitive optical coherence elastography using a high-dynamic-range force loading scheme for cervical rigidity assessment

An ultra-sensitive, wide-range force loading scheme is proposed for compression optical coherence elastography (OCE) that allows for the quantitative analysis of cervical tissue elasticity . We designed a force loading apparatus featuring a water sink for minuscule incremental loading through a volu...

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Veröffentlicht in:Biomedical optics express 2020-02, Vol.11 (2), p.688-698
Hauptverfasser: Yao, Xinwen, Li, Dawei, Park, Hyeon-Cheol, Chen, Defu, Guan, Honghua, Mahendroo, Mala, Li, Xingde
Format: Artikel
Sprache:eng
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Zusammenfassung:An ultra-sensitive, wide-range force loading scheme is proposed for compression optical coherence elastography (OCE) that allows for the quantitative analysis of cervical tissue elasticity . We designed a force loading apparatus featuring a water sink for minuscule incremental loading through a volume-controlled water droplet, from which the Young's modulus can be calculated by fitting the stress-strain curve. We validated the performance of the proposed OCE system on homogenous agar phantoms, showing the Young's modulus can be accurately estimated using this scheme. We then measured the Young's modulus of rodent cervical tissues acquired at different gestational ages, showing that the cervical rigidity of rodents was significantly dropped when entering the third trimester of pregnancy.
ISSN:2156-7085
2156-7085
DOI:10.1364/BOE.383720