Strain Tracking Algorithm

A strain tracking algorithm is a computational method that estimates how material or biological tissue deforms by comparing its position or appearance across images or measurement time points. It typically identifies stable features or image patterns, follows their displacement through sequential frames using image registration or motion estimation, and converts spatial changes into strain, a measure of deformation relative to the original configuration. In bioengineering, these algorithms quantify tissue mechanics in applications such as cardiac motion analysis, biomechanics, and engineered tissue evaluation. The resulting strain maps can support mechanical modeling, disease assessment, device design, and validation of experimental measurements.

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Research

JoVE Journal - Medicine
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Magnetic Resonance Derived Myocardial Strain Assessment Using Feature Tracking

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Cited by 186 •

2011

An accurate and practical method to measure parameters like strain in myocardial tissue is of great clinical value, since it has been shown, that strain is a more sensitive and earlier marker for contractile dysfunction than the frequently used parameter EF.

Research

JoVE Journal - Engineering

Measurement of Compressive Stress-Strain Response at Small-Strains

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2025

This protocol presents the configuration of a compression test device capable of precisely measuring the mechanical properties of microstructures in the small-strain region, along with a systematic method for compression testing using this device. The proposed device can be used to analyze various microstructures and the mechanical behavior of polymer-based materials.

Education

JoVE Science Education - Engineering

Quantitative Strain Mapping of an Abdominal Aortic Aneurysm

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2023

Source: Hannah L. Cebull1, Arvin H. Soepriatna1, John J. Boyle2 and Craig J. Goergen1 1Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana 2Mechanical Engineering & Materials Science, Washington University in St. Louis, St Louis, Missouri The mechanical behavior of soft tissues, such as blood vessels, skin, tendons, and other organs, are strongly influenced by their composition of elastin and collagen, which provide elasticity and strength. The fiber...

Stress-Strain Characteristics of Aluminum

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2023

Source: Roberto Leon, Department of Civil and Environmental Engineering, Virginia Tech, Blacksburg, VA Aluminum is one of the most abundant materials in our lives, as it is omnipresent in everything from soda cans to airplane components. Its widespread use is relatively recent (1900AD), primarily because aluminum does not occur in its free state, but rather in combination with oxygen and other elements, often in the form of Al2O3. Aluminum was originally obtained from bauxite mineral deposits...

A Microfluidic Device for Studying Multiple Distinct Strains

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Cited by 2 •

2012

We present a simple method to produce microfluidic devices capable of applying similar dynamic conditions to multiple distinct strains, without the need for a clean room or soft lithography.

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