Forward Scatter Analysis

Forward Scatter Analysis is a flow cytometry method that estimates relative cell size by measuring laser light deflected in a narrow, forward-directed angle as particles pass through the instrument. Larger cells generally produce stronger forward-scatter signals, although the measurement also depends on factors such as cell shape, refractive index, and optical properties. In immunology and infection research, forward scatter helps distinguish major leukocyte populations, identify changes in cell morphology, and support gating strategies alongside side scatter and fluorescence signals. It can also reveal shifts associated with immune activation, infection, cell growth, or cellular damage, improving the characterization of heterogeneous biological samples.

Forward Scatter Analysis - Related Videos

Research

JoVE Journal - Bioengineering

High Speed Sub-GHz Spectrometer for Brillouin Scattering Analysis

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Cited by 42 •

2015

Here we present a protocol to build a rapid Brillouin spectrometer. Cascading virtually imaged phase array (VIPA) etalons achieve a measurement speed more than 1,000 times faster than traditional scanning Fabry-Perot spectrometers. This improvement provides the means for Brillouin analysis of tissue and biomaterials at low power levels in vivo.

Research

JoVE Journal - Biochemistry
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Analysis of SEC-SAXS data via EFA deconvolution and Scatter

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Cited by 48 •

2021

SEC-BioSAXS measurements of biological macromolecules are a standard approach for determining solution structure of macromolecules and their complexes. Here, we analyze SEC-BioSAXS data from two types of commonly encountered SEC traces—chromatograms with fully resolved and partially resolved peaks. We demonstrate the analysis and deconvolution using scatter and BioXTAS RAW.

High-speed Continuous-wave Stimulated Brillouin Scattering Spectrometer for Material Analysis

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Cited by 7 •

2017

We describe the construction of a rapid continuous-wave-stimulated-Brillouin-scattering (CW-SBS) spectrometer. The spectrometer employs single-frequency diode-lasers and an atomic vapor notch-filter to acquire transmission spectra of turbid/non-turbid samples with high spectral-resolution at speeds up to 100-fold faster than those of existing CW-SBS spectrometers. This improvement enables high-speed Brillouin material analysis.

Contrast-Matching Detergent in Small-Angle Neutron Scattering Experiments for Membrane Protein Structural Analysis and Ab Initio Modeling

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Cited by 2 •

2018

This protocol demonstrates how to obtain a low-resolution ab initio model and structural details of a detergent-solubilized membrane protein in solution using small-angle neutron scattering with contrast-matching of the detergent.

Observation and Analysis of Blinking Surface-enhanced Raman Scattering

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Cited by 4 •

2018

This protocol describes the analysis of blinking surface-enhanced Raman scattering due to the random walk of a single molecule on a silver surface using power laws.

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