Biaxial Strain

Biaxial strain is deformation applied simultaneously along two perpendicular directions, providing a closer representation of the mechanical conditions experienced by many biological tissues than one-dimensional stretching. In bioengineering systems, a flexible membrane or scaffold is stretched along each axis, often with independent control of strain magnitude and timing; cells transmit these forces through focal adhesions and the cytoskeleton, activating mechanotransduction pathways that alter cell behavior. Researchers use biaxial strain to study how cells align, remodel extracellular matrix, and regulate gene expression under physiological or disease-related loading. The approach supports tissue engineering, biomaterials testing, and models of cardiovascular, musculoskeletal, and epithelial function.

Biaxial Strain - Related Videos

Research

JoVE Journal - Engineering

A Novel Biaxial Testing Apparatus for the Determination of Forming Limit under Hot Stamping Conditions

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Cited by 1 •

2017

This protocol proposes a novel biaxial testing system used on a resistance heating uniaxial tensile test machine in order to determine the forming limit diagram (FLD) of sheet metals under hot stamping conditions.

Design of a Biaxial Mechanical Loading Bioreactor for Tissue Engineering

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Cited by 24 •

2013

We designed a novel mechanical loading bioreactor that can apply uniaxial or biaxial mechanical strain to a cartilage biocomposite prior to transplantation into an articular cartilage defect.

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.

Biaxial Mechanical Characterizations of Atrioventricular Heart Valves

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Cited by 25 •

2019

This protocol involves characterizations of atrioventricular valve leaflets with force-controlled, displacement-controlled, and stress-relaxation biaxial mechanical testing procedures. Results acquired with this protocol can be used for constitutive model development to simulate the mechanical behavior of functioning valves under a finite element simulation framework.

Education

JoVE Science Education - Engineering

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...

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