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Journal ArticleDOI

Scanning flow cytometry for individual particle analysis

Valeri P. Maltsev
- 01 Jan 2000 - 
- Vol. 71, Iss: 1, pp 243-255
TLDR
In this paper, the authors review the development and experimental aspects of the scanning flow cytometry (SFC) and provide the measurement of fluorescence and light scattering of individual particles with a typical rate up to 500 particles/s.
Abstract
With this work we review the development of theoretical and experimental aspects of the scanning flow cytometry (SFC). The optical and hydrodynamic systems of the SFC provide the measurement of fluorescence and light scattering of individual particles with a typical rate up to 500 particles/s. In addition the optical system of the SFC has the capability of individual particle analysis beyond that of an ordinary flow cytometry. The SFC measures an entire angular dependency of light scattering intensity (flying light scattering indicatrix, FLSI) over angles ranging from 5° to 120°. The fluorescence collection efficiency of the SFC approaches 1/3 of a sphere. Moreover, the optical system of the SFC provides the measurement of fluorescence in a time-resolved mode on a microsecond time scale. The processing of the output data in light scattering is based on a parametric solution of the inverse light-scattering problem, the FLSI method. The FLSI method allows the determination of size and refractive index of spherically modeled particles over a range of diameters from 0.9 to 15 μm and a range of refractive indexes from 1.37 to 1.60. The performance of the SFC in different applications has been demonstrated.

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Citations
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TL;DR: In this article, an apparatus for acoustic concentration of particles in fluid flow includes a substantially acoustically transparent membrane and a vibration generator that define a fluid flow path between a fluid source and a fluid outlet.
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Ultrasonic analyte concentration and application in flow cytometry

TL;DR: In this article, the authors present an apparatus and corresponding method for concentrating analytes within a fluid flowing through a tube using acoustic radiation pressure, which includes a function generator that outputs a radio frequency electrical signal to a transducer that transforms the radio frequency electric signal to an acoustic signal and couples the acoustic signal to the tube.
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Particle analysis in an acoustic cytometer

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References
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Book

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TL;DR: In this paper, a Potpourri of Particles is used to describe surface modes in small Particles and the Angular Dependence of Scattering is shown to be a function of the size of the particles.
Journal ArticleDOI

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H. C. Van de Hulst, +1 more
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TL;DR: Light scattering by small particles as mentioned in this paper, Light scattering by Small Particle Scattering (LPS), Light scattering with small particles (LSC), Light Scattering by Small Parts (LSP),
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Light Scattering by Small Particles

TL;DR: Light scattering by small particles as mentioned in this paper, Light scattering by Small Particle Scattering (LPS), Light scattering with small particles (LSC), Light Scattering by Small Parts (LSP),
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TL;DR: Cytophysical Methods Cell Preparation Cytochemical Methods Analysis of Measurements Cell Biology Hematology and Immunology Applications in Oncology Index.
Journal Article

Polarized light. Fundamentals and applications

Edward Collett
- 01 Jan 1993 - 
TL;DR: In this article, the Stokes parameters and the Mueller matrices for optical and Fararaday rotation were used to measure the characteristics of polarizing elements and to calculate the parameters of the polarization ellipse.
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