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Items: 1 to 20 of 110

1.

Near-infrared optical mammography for breast cancer detection with intrinsic contrast.

Fantini S, Sassaroli A.

Ann Biomed Eng. 2012 Feb;40(2):398-407. doi: 10.1007/s10439-011-0404-4. Epub 2011 Oct 5. Review.

2.

Near-infrared spectral tomography integrated with digital breast tomosynthesis: effects of tissue scattering on optical data acquisition design.

Michaelsen K, Krishnaswamy V, Pogue BW, Poplack SP, Paulsen KD.

Med Phys. 2012 Jul;39(7):4579-87. doi: 10.1118/1.4728228.

3.

Broadband optical mammography: chromophore concentration and hemoglobin saturation contrast in breast cancer.

Anderson PG, Kainerstorfer JM, Sassaroli A, Krishnamurthy N, Homer MJ, Graham RA, Fantini S.

PLoS One. 2015 Mar 17;10(3):e0117322. doi: 10.1371/journal.pone.0117322. eCollection 2015.

4.

Identification and quantification of intrinsic optical contrast for near-infrared mammography.

Quaresima V, Matcher SJ, Ferrari M.

Photochem Photobiol. 1998 Jan;67(1):4-14.

PMID:
9477760
5.

Spectroscopy enhances the information content of optical mammography.

Cerussi AE, Jakubowski D, Shah N, Bevilacqua F, Lanning R, Berger AJ, Hsiang D, Butler J, Holcombe RF, Tromberg BJ.

J Biomed Opt. 2002 Jan;7(1):60-71.

6.

Monitoring the response to neoadjuvant hormone therapy for locally advanced breast cancer using three-dimensional time-resolved optical mammography.

Enfield L, Cantanhede G, Douek M, Ramalingam V, Purushotham A, Hebden J, Gibson A.

J Biomed Opt. 2013 May;18(5):56012. doi: 10.1117/1.JBO.18.5.056012.

PMID:
23698285
7.

In vivo hemoglobin and water concentrations, oxygen saturation, and scattering estimates from near-infrared breast tomography using spectral reconstruction.

Srinivasan S, Pogue BW, Jiang S, Dehghani H, Kogel C, Soho S, Gibson JJ, Tosteson TD, Poplack SP, Paulsen KD.

Acad Radiol. 2006 Feb;13(2):195-202.

PMID:
16428055
8.

Time-domain optical mammography SoftScan: initial results.

Intes X.

Acad Radiol. 2005 Aug;12(8):934-47. Erratum in: Acad Radiol. 2005 Oct;12(10):1355.

PMID:
16023382
9.

Multispectral near-infrared tomography: a case study in compensating for water and lipid content in hemoglobin imaging of the breast.

McBride TO, Pogue BW, Poplack S, Soho S, Wells WA, Jiang S, Osterberg UL, Paulsen KD.

J Biomed Opt. 2002 Jan;7(1):72-9.

PMID:
11818014
10.

Interpreting hemoglobin and water concentration, oxygen saturation, and scattering measured in vivo by near-infrared breast tomography.

Srinivasan S, Pogue BW, Jiang S, Dehghani H, Kogel C, Soho S, Gibson JJ, Tosteson TD, Poplack SP, Paulsen KD.

Proc Natl Acad Sci U S A. 2003 Oct 14;100(21):12349-54. Epub 2003 Sep 26.

12.

Review of optical breast imaging and spectroscopy.

Grosenick D, Rinneberg H, Cubeddu R, Taroni P.

J Biomed Opt. 2016 Sep;21(9):091311. doi: 10.1117/1.JBO.21.9.091311. Review.

PMID:
27403837
13.

Scanning time-domain optical mammography: detection and characterization of breast tumors in vivo.

Rinneberg H, Grosenick D, Moesta KT, Mucke J, Gebauer B, Stroszczynski C, Wabnitz H, Moeller M, Wassermann B, Schlag PM.

Technol Cancer Res Treat. 2005 Oct;4(5):483-96.

PMID:
16173820
14.

Bulk optical properties and tissue components in the female breast from multiwavelength time-resolved optical mammography.

Spinelli L, Torricelli A, Pifferi A, Taroni P, Danesini GM, Cubeddu R.

J Biomed Opt. 2004 Nov-Dec;9(6):1137-42.

PMID:
15568933
15.

Noninvasive functional optical spectroscopy of human breast tissue.

Shah N, Cerussi A, Eker C, Espinoza J, Butler J, Fishkin J, Hornung R, Tromberg B.

Proc Natl Acad Sci U S A. 2001 Apr 10;98(8):4420-5. Epub 2001 Apr 3.

16.

Spatial and spectral information in optical mammography.

Fantini S, Heffer EL, Pera VE, Sassaroli A, Liu N.

Technol Cancer Res Treat. 2005 Oct;4(5):471-82.

PMID:
16173819
17.

Time-domain scanning optical mammography: II. Optical properties and tissue parameters of 87 carcinomas.

Grosenick D, Wabnitz H, Moesta KT, Mucke J, Schlag PM, Rinneberg H.

Phys Med Biol. 2005 Jun 7;50(11):2451-68. Epub 2005 May 18.

PMID:
15901948
18.

Spatial variations in optical and physiological properties of healthy breast tissue.

Shah N, Cerussi AE, Jakubowski D, Hsiang D, Butler J, Tromberg BJ.

J Biomed Opt. 2004 May-Jun;9(3):534-40.

19.
20.

Assessing the future of diffuse optical imaging technologies for breast cancer management.

Tromberg BJ, Pogue BW, Paulsen KD, Yodh AG, Boas DA, Cerussi AE.

Med Phys. 2008 Jun;35(6):2443-51.

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