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Items: 1 to 20 of 149

1.

Detection and diagnosis of oral neoplasia with an optical coherence microscope.

Clark AL, Gillenwater A, Alizadeh-Naderi R, El-Naggar AK, Richards-Kortum R.

J Biomed Opt. 2004 Nov-Dec;9(6):1271-80.

2.

Scattering attenuation microscopy of oral epithelial dysplasia.

Tomlins PH, Adegun O, Hagi-Pavli E, Piper K, Bader D, Fortune F.

J Biomed Opt. 2010 Nov-Dec;15(6):066003. doi: 10.1117/1.3505019.

PMID:
21198177
3.

Subcellular imaging of epithelium with time-lapse optical coherence tomography.

Pan YT, Wu ZL, Yuan ZJ, Wang ZG, Du CW.

J Biomed Opt. 2007 Sep-Oct;12(5):050504.

PMID:
17994860
4.

Detection of dysplasia with near real time confocal microscopy.

Clark A, Collier T, Lacy A, Follen M, Malpica A, Gillenwater A, Richards-Kortum R.

Biomed Sci Instrum. 2002;38:393-8.

PMID:
12085638
5.

High-speed processing architecture for spectral-domain optical coherence microscopy.

Chelliyil RG, Ralston TS, Marks DL, Boppart SA.

J Biomed Opt. 2008 Jul-Aug;13(4):044013. doi: 10.1117/1.2960018.

6.

Cellular resolution ex vivo imaging of gastrointestinal tissues with optical coherence microscopy.

Aguirre AD, Chen Y, Bryan B, Mashimo H, Huang Q, Connolly JL, Fujimoto JG.

J Biomed Opt. 2010 Jan-Feb;15(1):016025. doi: 10.1117/1.3322704.

7.

Delineation of an oral cancer lesion with swept-source optical coherence tomography.

Tsai MT, Lee HC, Lu CW, Wang YM, Lee CK, Yang CC, Chiang CP.

J Biomed Opt. 2008 Jul-Aug;13(4):044012. doi: 10.1117/1.2960632.

PMID:
19021340
8.

Characterization of different tissue changes in normal, betel chewers, potentially malignant lesions, conditions and oral squamous cell carcinoma using reflectance confocal microscopy: correlation with routine histopathology.

Anuthama K, Sherlin HJ, Anuja N, Ramani P, Premkumar P, Chandrasekar T.

Oral Oncol. 2010 Apr;46(4):232-48. doi: 10.1016/j.oraloncology.2009.12.008. Epub 2010 Feb 6.

PMID:
20138798
9.

Spectroscopic spectral-domain optical coherence microscopy.

Xu C, Vinegoni C, Ralston TS, Luo W, Tan W, Boppart SA.

Opt Lett. 2006 Apr 15;31(8):1079-81.

PMID:
16625909
10.

Automated classification of optical coherence tomography images for the diagnosis of oral malignancy in the hamster cheek pouch.

Pande P, Shrestha S, Park J, Serafino MJ, Gimenez-Conti I, Brandon J, Cheng YS, Applegate BE, Jo JA.

J Biomed Opt. 2014 Aug;19(8):086022. doi: 10.1117/1.JBO.19.8.086022.

11.

Heterodyne coherent anti-Stokes Raman scattering (CARS) imaging.

Potma EO, Evans CL, Xie XS.

Opt Lett. 2006 Jan 15;31(2):241-3.

PMID:
16441043
12.
13.

Speckle variance detection of microvasculature using swept-source optical coherence tomography.

Mariampillai A, Standish BA, Moriyama EH, Khurana M, Munce NR, Leung MK, Jiang J, Cable A, Wilson BC, Vitkin IA, Yang VX.

Opt Lett. 2008 Jul 1;33(13):1530-2.

PMID:
18594688
14.

Three-dimensional imaging of normal skin and nonmelanoma skin cancer with cellular resolution using Gabor domain optical coherence microscopy.

Lee KS, Zhao H, Ibrahim SF, Meemon N, Khoudeir L, Rolland JP.

J Biomed Opt. 2012 Dec;17(12):126006. doi: 10.1117/1.JBO.17.12.126006.

15.

Dark-field optical coherence microscopy.

Villiger M, Pache C, Lasser T.

Opt Lett. 2010 Oct 15;35(20):3489-91. doi: 10.1364/OL.35.003489.

PMID:
20967109
16.

Detecting intrinsic scattering changes correlated to neuron action potentials using optical coherence imaging.

Graf BW, Ralston TS, Ko HJ, Boppart SA.

Opt Express. 2009 Aug 3;17(16):13447-57.

17.
18.

Inverse scattering for optical coherence tomography.

Ralston TS, Marks DL, Carney PS, Boppart SA.

J Opt Soc Am A Opt Image Sci Vis. 2006 May;23(5):1027-37.

PMID:
16642179
19.

Differentiating oral lesions in different carcinogenesis stages with optical coherence tomography.

Tsai MT, Lee CK, Lee HC, Chen HM, Chiang CP, Wang YM, Yang CC.

J Biomed Opt. 2009 Jul-Aug;14(4):044028. doi: 10.1117/1.3200936.

PMID:
19725739
20.

Speckle reduction in optical coherence tomography images using tissue viscoelasticity.

Kennedy BF, Curatolo A, Hillman TR, Saunders CM, Sampson DD.

J Biomed Opt. 2011 Feb;16(2):020506. doi: 10.1117/1.3548239.

PMID:
21361662

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