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Erschienen in: Lasers in Medical Science 2/2015

01.02.2015 | Original Article

Effect of optical clearing agents on optical coherence tomography images of cervical epithelium

verfasst von: Julia Gallwas, Anna Stanchi, Nina Ditsch, Theresa Schwarz, Christian Dannecker, Susanna Mueller, Herbert Stepp, Uwe Mortensen

Erschienen in: Lasers in Medical Science | Ausgabe 2/2015

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Abstract

Optical coherence tomography (OCT) can be used as an adjunct to colposcopy in order to detect precancerous and cancerous cervical lesions. Optical clearing agents (OCAs) temporarily reduce the optical scattering of biological tissues. The purpose of this study was to investigate their influence on OCT imaging. OCT images were taken from unsuspicious and suspicious areas of fresh conization specimens immediately after resection and 5, 10, and 20 min after application of dimethyl sulfoxide (DMSO) or polyethylene glycol (PEG). Corresponding histologies were obtained from all sites. The images taken 5, 10, and 20 min after application of OCA were compared to the initial images with respect to changes in brightness, contrast, and scanning depth using a standard nonparametric test of differences of proportions. Further, mean intensity backscattering curves were calculated from all OCT images in the histological groups CIN2, CIN3, inflammation, and normal epithelium. Mean difference profiles within each of these groups were determined, reflecting the mean differences between the condition before the application of OCA and the exposure times 5, 10, and 20 min, respectively. The null hypothesis was tested employing the Dicky-Fuller-test, Hotelings-test and run test. The visual analysis of 434 OCT images from 109 different sites of 24 conization specimens showed a statistically significant increase in brightness and contrast for normal and dysplastic epithelium after application of DMSO or PEG. Further, the analysis of mean intensity profiles suggests the existence of an increased backscattering intensity after application of DMSO or PEG. DMSO and PEG contribute substantially to optical clearing in cervical squamous epithelium and therefore influence OCT imaging in a positive way. With further refinement of the OCT technology, the observed changes may be beneficial in interpreting the tissue microstructure and identifying cervical intraepithelial neoplasia.
Literatur
1.
Zurück zum Zitat Turchin IV, Sergeeva EA, Dolin LS, Kamensky VA, Shakhova NM, Richards-Kortum R (2005) Novel algorithm of processing optical coherence tomography images for differentiation of biological tissue pathologies. J Biomed Opt 10, 064024PubMedCrossRef Turchin IV, Sergeeva EA, Dolin LS, Kamensky VA, Shakhova NM, Richards-Kortum R (2005) Novel algorithm of processing optical coherence tomography images for differentiation of biological tissue pathologies. J Biomed Opt 10, 064024PubMedCrossRef
2.
Zurück zum Zitat Bazant-Hegemark F, Edey K, Swingler GR, Read MD, Stone N (2008) Review: optical micrometer resolution scanning for non-invasive grading of precancer in the human uterine cervix. Technol Cancer Res Treat 7(6):483–496, ReviewPubMedCrossRef Bazant-Hegemark F, Edey K, Swingler GR, Read MD, Stone N (2008) Review: optical micrometer resolution scanning for non-invasive grading of precancer in the human uterine cervix. Technol Cancer Res Treat 7(6):483–496, ReviewPubMedCrossRef
3.
Zurück zum Zitat Escobar PF, Rojas-Espaillat L, Tisci S, Enerson C, Brainard J, Smith J, Tresser NJ, Feldchtein FI, Rojas LB, Belinson JL (2006) Optical coherence tomography as a diagnostic aid to visual inspection and colposcopy for preinvasive and invasive cancer of the uterine cervix. Int J Gynecol Cancer 16:1815–1822PubMedCrossRef Escobar PF, Rojas-Espaillat L, Tisci S, Enerson C, Brainard J, Smith J, Tresser NJ, Feldchtein FI, Rojas LB, Belinson JL (2006) Optical coherence tomography as a diagnostic aid to visual inspection and colposcopy for preinvasive and invasive cancer of the uterine cervix. Int J Gynecol Cancer 16:1815–1822PubMedCrossRef
4.
Zurück zum Zitat Gallwas JMD, Turk L, Friese K, Dannecker C (2010) Optical coherence tomography (OCT) as a non invasive imaging technique for preinvasive and invasive neoplasia of the uterine cervix. Ultrasound Obstet Gynecol 36(5):624–629PubMedCrossRef Gallwas JMD, Turk L, Friese K, Dannecker C (2010) Optical coherence tomography (OCT) as a non invasive imaging technique for preinvasive and invasive neoplasia of the uterine cervix. Ultrasound Obstet Gynecol 36(5):624–629PubMedCrossRef
5.
Zurück zum Zitat Kang W, Qi X, Tresser NJ, Kareta M, Belinson JL, Rollins AM (2011) Diagnostic efficacy of computer extracted image features in optical coherence tomography of the precancerous cervix. Med Phys 38(1):107–113PubMedCentralPubMedCrossRef Kang W, Qi X, Tresser NJ, Kareta M, Belinson JL, Rollins AM (2011) Diagnostic efficacy of computer extracted image features in optical coherence tomography of the precancerous cervix. Med Phys 38(1):107–113PubMedCentralPubMedCrossRef
6.
Zurück zum Zitat Gallwas J, Turk L, Stepp H, Mueller S, Ochsenkuehn R, Friese K, Dannecker C (2011) Optical coherence tomography for the diagnosis of cervical intraepithelial neoplasia. Lasers Surg Med 43(3):206–212PubMedCrossRef Gallwas J, Turk L, Stepp H, Mueller S, Ochsenkuehn R, Friese K, Dannecker C (2011) Optical coherence tomography for the diagnosis of cervical intraepithelial neoplasia. Lasers Surg Med 43(3):206–212PubMedCrossRef
7.
Zurück zum Zitat He Y, Wang RK (2004) Dynamic optical clearing effect of tissue impregnated with hyperosmotic agents and studied with optical coherence tomography. J Biomed Opt 9(1):200–206PubMedCrossRef He Y, Wang RK (2004) Dynamic optical clearing effect of tissue impregnated with hyperosmotic agents and studied with optical coherence tomography. J Biomed Opt 9(1):200–206PubMedCrossRef
8.
Zurück zum Zitat Rylander CG, Stumpp OF, Milner TE, Kemp NJ, Mendenhall JM, Diller KR, Welch AJ (2006) Dehydration mechanism of optical clearing in tissue. J Biomed Opt 11(4), 041117PubMedCrossRef Rylander CG, Stumpp OF, Milner TE, Kemp NJ, Mendenhall JM, Diller KR, Welch AJ (2006) Dehydration mechanism of optical clearing in tissue. J Biomed Opt 11(4), 041117PubMedCrossRef
9.
Zurück zum Zitat Millon SR, Roldan-Perez KM, Riching KM, Palmer GM, Ramanujam N (2006) Effect of optical clearing agents on the in vivo optical properties of squamous epithelial tissue. Lasers Surg Med 38(10):920–927PubMedCrossRef Millon SR, Roldan-Perez KM, Riching KM, Palmer GM, Ramanujam N (2006) Effect of optical clearing agents on the in vivo optical properties of squamous epithelial tissue. Lasers Surg Med 38(10):920–927PubMedCrossRef
10.
Zurück zum Zitat Zhu Z, Wu G, Wei H, Yang H, He Y, Xie S, Zhao Q, Guo X (2012) Investigation of the permeability and optical clearing ability of different analytes in human normal and cancerous breast tissues by spectral domain OCT. J Biophotonics 5(7):536–543PubMedCrossRef Zhu Z, Wu G, Wei H, Yang H, He Y, Xie S, Zhao Q, Guo X (2012) Investigation of the permeability and optical clearing ability of different analytes in human normal and cancerous breast tissues by spectral domain OCT. J Biophotonics 5(7):536–543PubMedCrossRef
11.
Zurück zum Zitat Zhu D, Larin KV, Luo Q, Tuchin VV (2013) Recent progress in tissue optical clearing. Laser Photonics Rev 7(5):732–757CrossRef Zhu D, Larin KV, Luo Q, Tuchin VV (2013) Recent progress in tissue optical clearing. Laser Photonics Rev 7(5):732–757CrossRef
12.
Zurück zum Zitat Genina EA, Bashkatov AN, Kolesnikova EA, Basko MV, Terentyuk GS, Tuchin VV (2014) Optical coherence tomography monitoring of enhanced skin optical clearing in rats in vivo. J Biomed Opt 19(2):21109PubMedCrossRef Genina EA, Bashkatov AN, Kolesnikova EA, Basko MV, Terentyuk GS, Tuchin VV (2014) Optical coherence tomography monitoring of enhanced skin optical clearing in rats in vivo. J Biomed Opt 19(2):21109PubMedCrossRef
13.
Zurück zum Zitat Fleiss JL, Levin B, Paik MC (2003) Statistical methods for rates and proportions, 3rd edn. Wiley, New YorkCrossRef Fleiss JL, Levin B, Paik MC (2003) Statistical methods for rates and proportions, 3rd edn. Wiley, New YorkCrossRef
16.
Zurück zum Zitat Said E, David A (1984) Dickey: testing for unit roots in autoregressive moving average models of unknown order. Biometrika 71:599–607CrossRef Said E, David A (1984) Dickey: testing for unit roots in autoregressive moving average models of unknown order. Biometrika 71:599–607CrossRef
17.
Zurück zum Zitat Gallwas J, Stanchi A, Dannecker C, Ditsch N, Mueller S, Mortensen U, Stepp H (2014) Effect of acetic acid on optical coherence tomography (OCT) images of cervical epithelium. Lasers Med Sci 2014 May 15 Gallwas J, Stanchi A, Dannecker C, Ditsch N, Mueller S, Mortensen U, Stepp H (2014) Effect of acetic acid on optical coherence tomography (OCT) images of cervical epithelium. Lasers Med Sci 2014 May 15
18.
Zurück zum Zitat Gallwas J, Mortensen U, Gaschler R, Ochsenkuehn R, Stepp H, Friese K, Dannecker C (2012) Validation of an ex vivo human cervical tissue model for optical imaging studies. Lasers Surg Med 44(3):245–248PubMedCrossRef Gallwas J, Mortensen U, Gaschler R, Ochsenkuehn R, Stepp H, Friese K, Dannecker C (2012) Validation of an ex vivo human cervical tissue model for optical imaging studies. Lasers Surg Med 44(3):245–248PubMedCrossRef
19.
Zurück zum Zitat Hiller C, Bock U, Balser S, Haltner-Ukomadu E, Dahm M (2008) Establishment and validation of an ex vivo human cervical tissue model for local delivery studies. Eur J Pharm Biopharm 68(2):390–399PubMedCrossRef Hiller C, Bock U, Balser S, Haltner-Ukomadu E, Dahm M (2008) Establishment and validation of an ex vivo human cervical tissue model for local delivery studies. Eur J Pharm Biopharm 68(2):390–399PubMedCrossRef
Metadaten
Titel
Effect of optical clearing agents on optical coherence tomography images of cervical epithelium
verfasst von
Julia Gallwas
Anna Stanchi
Nina Ditsch
Theresa Schwarz
Christian Dannecker
Susanna Mueller
Herbert Stepp
Uwe Mortensen
Publikationsdatum
01.02.2015
Verlag
Springer London
Erschienen in
Lasers in Medical Science / Ausgabe 2/2015
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-014-1674-5

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