Anthony J. Durkin, Ph.D.

2001- Beckman Laser Institute University of California, Irvine, Irvine, CA 
 2017- Biomedical Engineering University of California, Irvine, Irvine, CA 
Spatial Frequency Domain Imaging, tissue optics, fluorescence spectroscopy, near infrared spectroscopy, wound healing, dermatology, skin cancer, burn wounds
"Anthony J. Durkin"


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Russell F. Pinizzotto grad student 1988-1989 University of North Texas - Denton
Rebecca Richards-Kortum grad student 1991-1995 UT Austin
Marwood N. Ediger post-doc 1995-1998 US Food & Drug Administration
 (National Research Council Postdoctoral Fellow)
Bruce J. Tromberg post-doc 2001-2003 UC Irvine
 (Beckman Foundation Fellow)


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Michael Ghijsen grad student UC Irvine
Kyle Nadeau grad student UC Irvine
Sheng-Hao Tseng grad student UC Irvine (E-Tree)
Amaan Mazhar post-doc UC Irvine
Adrien Ponticorvo post-doc UC Irvine
Rolf B. Saager post-doc UC Irvine (Microtree)
Amr Yafi post-doc UC Irvine
Dmitry Yudovsky post-doc UC Irvine (Microtree)
Gordon T. Kennedy research scientist UC Irvine
Ata Sharif research scientist UC Irvine
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Saager RB, Rowland RA, Baldado ML, et al. (2019) Impact of hemoglobin breakdown products in the spectral analysis of burn wounds using spatial frequency domain spectroscopy. Journal of Biomedical Optics. 24: 1-4
Horan ST, Gardner AR, Saager R, et al. (2018) Recovery of layered tissue optical properties from spatial frequency-domain spectroscopy and a deterministic radiative transport solver. Journal of Biomedical Optics. 24: 1-11
Ponticorvo A, Rowland R, Baldado M, et al. (2018) Evaluating clinical observation versus Spatial Frequency Domain Imaging (SFDI), Laser Speckle Imaging (LSI) and thermal imaging for the assessment of burn depth. Burns : Journal of the International Society For Burn Injuries
Saidian M, Lakey JRT, Ponticorvo A, et al. (2018) Characterisation of impaired wound healing in a preclinical model of induced diabetes using wide-field imaging and conventional immunohistochemistry assays. International Wound Journal
Saager RB, Baldado ML, Rowland RA, et al. (2018) Method using in vivo quantitative spectroscopy to guide design and optimization of low-cost, compact clinical imaging devices: emulation and evaluation of multispectral imaging systems. Journal of Biomedical Optics. 23: 1-12
Ghijsen M, Lentsch GR, Gioux S, et al. (2018) Quantitative real-time optical imaging of the tissue metabolic rate of oxygen consumption. Journal of Biomedical Optics. 23: 1-12
Lertsakdadet B, Yang BY, Dunn CE, et al. (2018) Correcting for motion artifact in handheld laser speckle images. Journal of Biomedical Optics. 23: 1-7
Fredriksson I, Saager RB, Durkin AJ, et al. (2017) Evaluation of a pointwise microcirculation assessment method using liquid and multilayered tissue simulating phantoms. Journal of Biomedical Optics. 22: 1-9
Saager RB, Dang AN, Huang SS, et al. (2017) Portable (handheld) clinical device for quantitative spectroscopy of skin, utilizing spatial frequency domain reflectance techniques. The Review of Scientific Instruments. 88: 094302
Kennedy GT, Lentsch GR, Trieu B, et al. (2017) Solid tissue simulating phantoms having absorption at 970 nm for diffuse optics. Journal of Biomedical Optics. 22: 76013
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