Polarizing Microscopy

Polarizing microscopy is an optical imaging technique that uses polarized light to reveal structures and materials that interact differently with light, making it valuable for identifying crystalline or otherwise anisotropic substances. Light passes through a polarizer, the specimen, and an analyzer oriented at a selected angle; birefringent components change the light’s polarization, producing brightness, extinction, or interference colors against a dark background. In medicine, this contrast helps detect and characterize substances such as monosodium urate crystals in gout, calcium pyrophosphate crystals in pseudogout, and birefringent materials in tissue sections. The method supports rapid, minimally destructive assessment in clinical diagnosis and pathology.

Polarizing Microscopy - Related Videos

Education

JoVE Core - Social Psychology

Group Polarization

0 Views •

2020

Group polarization is the strengthening of an original group attitude following the discussion of views within a group (Teger & Pruitt, 1967). That is, if a group initially favors a viewpoint, after discussion the group consensus is likely a stronger endorsement of the viewpoint. Conversely, if the group was initially opposed to a viewpoint, group discussion would likely lead to stronger opposition. The phenomenon of group polarization explains many actions taken by groups that would not...

Research

JoVE Journal - Biology
Free Sample

Measurement of Liver Stiffness Using Atomic Force Microscopy Coupled with Polarization Microscopy

0 Views •

Cited by 15 •

2022

We present a protocol to measure the elastic moduli of collagen-rich areas in normal and diseased liver using atomic force microscopy. The simultaneous use of polarization microscopy provides high spatial precision for localizing collagen-rich areas in the liver sections.

Molecular Shape and Polarity

0 Views •

2020

Dipole Moment of a Molecule Polar covalent bonds connect two atoms with differing electronegativities, leaving one atom with a partial positive charge (δ+) and the other atom with a partial negative charge (δ–), as the electrons are pulled toward the more electronegative atom. This separation of charge gives rise to a bond dipole moment. The magnitude of a bond dipole moment is represented by the Greek letter mu (µ) and is given by the formula shown here, where Q is the magnitude of the...

Polarization-Sensitive Two-Photon Microscopy for a Label-Free Amyloid Structural Characterization

0 Views •

Cited by 1 •

2023

This paper describes how polarization-sensitive two-photon microscopy could be applied to characterize the local organization within label-free amyloid superstructures-spherulites. It also describes how to prepare and measure the sample, assemble the required setup, and analyze the data to obtain information about the local organization of amyloid fibrils.

Automation of Mode Locking in a Nonlinear Polarization Rotation Fiber Laser through Output Polarization Measurements

0 Views •

Cited by 2 •

2016

A protocol to detect and automate mode locking in a pre-adjusted nonlinear polarization rotation fiber laser is presented. The detection of a sudden change in the output polarization state when mode locking occurs is used to command the alignment of an intra-cavity polarization controller in order to find mode-locking conditions.

View All Results

FAQs

Related Topics