Shear Zone Anisotropy

Shear zone anisotropy is the directional variation of physical properties within a zone of concentrated rock deformation, where tectonic strain produces a fabric that influences how the subsurface behaves. Progressive shearing aligns minerals, foliations, fractures, and pore spaces, causing properties such as seismic velocity, strength, permeability, and electrical conductivity to differ with measurement direction. In environmental and geoscience research, recognizing this anisotropy improves interpretations of subsurface structure, groundwater movement, contaminant transport, and slope or fault stability. It also supports more reliable geological mapping, geophysical surveys, and models of fluid flow through fractured or deformed rock.

Shear Zone Anisotropy - Related Videos

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JoVE EoE - Biomolecular Interaction Detection Techniques

Fluorescence Anisotropy-Based Detection of Protein-Protein Interactions

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2025

In this video, we describe the fluorescence anisotropy technique to study the interactions between the fluorophore-tagged Shwachman-diamond syndrome (SBDS) protein and the elongation factor-like 1 GTPase (EFL1). On incubating SBDS proteins with gradually increasing concentrations of EFL1, a steady increase in anisotropy is observed, indicating a successful interaction between the two proteins.

Fluorescence Anisotropy to Determine Transcription Factor-DNA Binding Affinity

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2025

This video describes high-performance fluorescence anisotropy that helps to monitor the interaction between transcription factors and DNA. The assay monitors the interactions of a fluorophore-labeled DNA molecule with its specific transcription factor by measuring the degree of polarization due to molecular rotation or anisotropy of the fluorophore-labeled DNA.

Fluorescence Anisotropy as a Tool to Study Protein-protein Interactions

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Cited by 37 •

2016

Protein interactions are at the heart of a cell's function. Calorimetric and spectroscopic techniques are commonly used to characterize them. Here we describe fluorescence anisotropy as a tool to study the interaction between the protein mutated in the Shwachman-Diamond Syndrome (SBDS) and the Elongation factor-like 1 GTPase (EFL1).

Analysis of Shear Flow-induced Migration of Murine Marginal Zone B Cells In Vitro

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Cited by 2 •

2018

Marginal zone B cells (MZBs) respond to the force of shear flow by re-orienting their migration path up the flow. This protocol shows how to record and analyze the migration using a fluidics unit, pump, microscope imaging system, and free software.

Research

JoVE Journal - Medicine
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A Novel Capsulorhexis Technique Using Shearing Forces with Cystotome

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Cited by 5 •

2010

This video demonstrates a novel capsulorhexis technique in modern cataract surgery. Capsulorhexis is the most difficult and important part of phacoemulsification surgery.

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