Cytometry
Biokinetics Back to LLPC HomePage
The scanning flow cytometer modified for measurement of two-dimensional light-scattering pattern of individual particles
Measurement science and technology, 19 (2008) 015408
Discrimination of granulocyte subtypes from light scattering: theoretical analysis using a granulated sphere model
Optics Express, Vol. 15, Issue 25, pp. 16561-16580 (2007)
The discrete dipole approximation: an overview and recent developments
Journal of Quantitative Spectroscopy & Radiative Transfer, v.106(1-3), pp. 558-589 (2007).
Comparison between discrete dipole implementations and exact techniques
Journal of Quantitative Spectroscopy & Radiative Transfer, v.106(1-3), pp. 417-436 (2007).
The discrete dipole approximation for simulation of light scattering by particles much larger than the wavelength
Journal of Quantitative Spectroscopy & Radiative Transfer 106, 546-557 (2007)
Optics of erythrocytes
Optics of Biological Particles, ed. Hoekstra A.G., Maltsev V.P., Videen G., Springer, London, pp. 231-246 (2006)
Optics of leucocytes
Optics of Biological Particles, ed. Hoekstra A.G., Maltsev V.P., Videen G., Springer, London, pp. 253-264 (2006)
Optics of platelets
Optics of Biological Particles, ed. Hoekstra A.G., Maltsev V.P., Videen G., Springer, London, pp. 247-252 (2006)
Convergence of the discrete dipole approximation. II. An extrapolation technique to increase the accuracy
Journal of the Optical Society of America A, 23, pp. 2592-2601 (2006)
Convergence of the discrete dipole approximation. I. Theoretical analysis
Journal of the Optical Society of America A, 23, pp. 2578-2591 (2006)
First characterization of marine particles by laser scanning flow cytometry
Journal of Quantitative Spectroscopy & Radiative Transfer 102 (2006) 11–17
Determination of volume, shape and refractive index of individual blood platelets
Journal of Quantitative Spectroscopy & Radiative Transfer 102 (2006) 37-45
Characterization of spherical particles using high-order neural networks and scanning flow cytometry
Journal of Quantitative Spectroscopy & Radiative Transfer 102 (2006) 62–72
A study of light scattering of mononuclear blood cells with scanning flow cytometry
Journal of Quantitative Spectroscopy & Radiative Transfer 102 (2006) 121–128
Experimental and theoretical study of light scattering by individual mature red blood cells by use of scanning flow cytometry and a discrete dipole approximation
Applied Optics v. 44, pp. 5249 - 5256 (2005)
Single-particle sizing from light scattering by spectral decomposition
Applied Optics v. 43, pp. 5110 - 5115 (2004)
Analysis of Sub-Micron Spherical Particles using Scanning Flow Cytometry
Particles and Particles Systems Characterization Volume 17, Issue 5-6,
2000. Pages: 225-229
Calibration free method to determine the size and hemoglobin concentration
of individual red blood cells from light scattering
Applied Optics v. 39, 11, pp. 5884 – 5889 (2000)
Individual Escherichia coli cells studied from light scattering with
the scanning flow cytometer
Cytometry Volume 41, Issue 1, 2000, pp. 41-45
Scanning flow cytometry for individual particle analysis
Review of Scientific Instruments -- January 2000 -- Volume 71, Issue
1, pp. 243-255
Particle Classification from Light Scattering with the Scanning Flow
Cytometer
Cytometry Volume 37, Issue 3, 1999, pp. 215-220
Extrema in the light-scattering indicatrix of a homogeneous sphere
Journal of Optics A: Pure and Applied Optics v. 1, N 4, 448-453, July
1999
Light-Scattering Properties of Individual Erythrocytes
Applied Optics, Vol. 38, 230 - 235 (1999)
A New Design of the Flow Cuvette and Optical Set-Up for the Scanning
Flow Cytometer
Cytometry v. 31, N 2, pp. 78-84 (1998)
Method and device for determination of parameters of individual microparticles
US Patent Number: 5,650,847. Date of patent: Jul. 22, 1997
(abstract)
Absolute real-time determination of size and refractive index of individual
microspheres
Measurement Science and Technology, v. 8, N 9, pp. 1023-1027 (1997)
(abstract)
Parametric solution of the inverse light-scattering problem for individual
spherical particles
Applied Optics 36, N 24, pp. 6102-6108 (1997)
(abstract)
Absolute real-time measurement of particle size distribution
with the flying light-scattering indicatrix method
Applied Optics 35, 3275-3280 (1996)
(abstract)
(abstract)
Measurement of scattering properties of individual particles
with a scanning flow cytometer.
Applied Optics 34, 6301-6305 (1995)
(abstract)
Light scattering and fluorescence of single particles
measured by a scanning flow cytometer.
Proceedings of SPIE, 2386: 199-205 (1995)
(abstract)
(abstract)
Estimation of morphological characteristics of single
particles from light scattering data in flow cytometry", Russian Chemical
Bulletin, v. 43, No. 7, pp. 1115-1124 (1994)
(abstract)
Erythrocyte lysis in isotonic solution of ammonium chloride: Theoretical modeling and experimental verification
Journal of Theoretical Biology 251 (2008) 93–107
Fluorescence-microscopy-based image analysis
for analyte-dependent particle doublet detection
in a single-step immunoagglutination assay
Analytical Biochemistry 338 (2005) 90–101
Kinetics of the initial stage of immunoagglutionation studied with the scanning flow cytometer
Colloids and Surfaces B: Biointerfaces, Volume 32, Issue 3, pp. 245-255, 2003
"Kinetics of the accumulation of aluminum(III)-sulfophthalocyanine
by human leukocytes measured with a scanning flow cytometer,"
in Controlling Tissue Optical Properties: Applications in Clinical
Study,
Valery V. Tuchin, Editor, Proceedings of SPIE Vol. 4162, 108-119, 2000.
Mathematical Modeling the Kinetics of Cell Distribution in the Process
of Ligand-Receptor Binding
Journal of Theoretical Biology, Vol. 206, No. 3, pp. 407-417
(October 2000)
Kinetic study of formation of antigen-antibody complexes on the cell
surface with the scanning flow cytometer
SPIE Proceedings v. 3604, 199-206 (1999)
Free Radical Dispersion Polymerization of Styrene in a Mixture of 2-propanol
and Tetrahydrofuran
Journal of Polymer Science: Part A: Polymer Chemistry, Vol. 36, 2757–2761
(1998)
A model of complete classical treatment of dispersion radical polymerization
kinetics
Macromolecules 31, pp. 6455-6460 (1998)
A mathematical model of dispersion radical polymerization kinetics
Journal of Polymer Science, Polym. Chem., v. 35, N 9, p. 1799 (1997)
(abstract)