Literature


Literature

On this page, you can find links to numerical data tables supplemental to our publications in referred journals, MS theses and PhD dissertations by students graduated from BLL. We will greatly apprecitae it if you can cite these works as "Author Name, Thesis or Dissertation Title, Department of Physics, East Carolina University, Year of Publication" in your publications if you use any or some of them as reference(s).


Data Tables

    Refractive index of polystyrene spheres (for experimental details and related figures, see X. Ma, et al., Phys. Med. Biol., 48, 4165-4172 (2003))

    Refractive index of 20% intralipid solution (for experimental details and related figures, see H. Ding et al., JOSA A, 22, 1151-1157 (2005))

    Refractive index of porcine skin tissues (for experimental details and related figures, see H. Ding et al., JOSA A, 22, 1151-1157 (2005))

    Refractive indices and dispersion parameters of human skin tissues (for experimental details and related figures, see H. Ding et al., Phys. Med. Biol., 51, 1479-1489 (2006))

    Bulk optical parameters of porcine skin tissues (for experimental details and related figures, see X.Ma et al., Opt. Lett. 30, 412-414 (2005))

    Bulk optical parameters of 20% intralipid (for experimental details and related figure (Fig. 8), see Chen et al., Opt. Express, 14, 7420-7435 (2006)

(note: the standard deviation values of us is kept as the same as that of ua because it is determined as a dependent variable from us = ut - ua)

    Bulk optical parameters of 10% intralipid (for experimental details and related figure (Fig. 9), see Chen et al., Opt. Express, 14, 7420-7435 (2006)

(note: the standard deviation values of us is kept as the same as that of ua because it is determined as a dependent variable from us = ut - ua)

    3D morphology and GLCM parameter definition tables.pdf (for experimental details and related image example, see Jiang et al., Journal of Biomedical Optics, 12, 071102 (2016))

    "GLCM and intensity parameter files for PC3 and PCS cells.rar"; (for experimental details and related image example, see Jiang et al., Journal of Biomedical Optics, 12, 071102 (2016))


PhD Dissertations

   Wenhuan Jiang, PhD Dissertation: "Study of Morphology Based Cell Assay by Diffraction Imaging Flow Cytometry"; (2015)

   Marina Moran, PhD Dissertation: "Correlating the Morphological and Light Scattering Properties of Biological Cells"; (2013)

   Ioannis Gkigkitzis, PhD Dissertation: "Mathematical Modeling of Oxygen Transport, Cell Killing and Cell Decision Making in Photodynamic Therapy of Cancer" " (2012)

   Kenneth M. Jacobs, PhD Dissertation: "Development of a Diffraction Imaging Flow Cytometer for Study of Biological Cells"; (2010)

   Cheng Chen, PhD Dissertation: "Determination of Optical Parameters in Biological Tissues andApplication to Medical Imaging"; (2008)

  R. Scott Brock, PhD Dissertation: "Modeling of Light Scattering by Biological Cells Using a Finite-Difference Time Domain Method"; (2007)

   Huafeng Ding, PhD Dissertation; "Scattering of Light Waves by Biological Cells and in Tissues"; (2006)

   Xiaoyan Ma, PhD Dissertation: "Study of Optical Properties of Skin Tissues From Ultra-violet to Short-wave Infrared"; (2004)

   Qiyin Fang, PhD Dissertation: "Mechanism Study of Skin Tissue Ablation by Nanosecond Laser Pulses"; (2002)


MS Theses

   Yong Du, MS Thesis, "Optical Properties of Porcine Dermis in the Near Infrared Region between 900nm and 1500nm", (2000)

   Di Wu, MS Thesis: "Parallel Monte Carlo Simulations of Light Propagation in Turbid Media", (2000)

   Ke Dong, MS Thesis: "Monte Carlo Simulation of Converging Laser Beams Propagating in the Skin Tissue Phantoms with Random Rough Surfaces",(1999)

   Qiyin Fang: MS Thesis, "Time-Resolved Measurement of Transient Response of Water to Nanosecond Laser Pulses at 1064nm", (1998)

   Annamarie Lembare,MS Thesis: "Study of Soft Tissue Interaction with Optical Radiation", (1997)


Additional Literature (temporary links)

   Download from here (if available): 1,    2,     3,    4,    5,    6,     7,    8,    9,    10,    11,    12,     13,    14,    15   

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