Uniaxial Strain

Uniaxial strain is the controlled stretching or compression of a material along one primary axis, producing directional deformation that helps reveal how biological tissues and engineered constructs respond to mechanical forces. In bioengineering, researchers apply this strain using mechanical testing systems or cell-stretching devices, while controlling parameters such as strain magnitude, rate, duration, and loading cycles. These conditions can alter cell alignment, morphology, proliferation, and gene expression through mechanotransduction, the conversion of physical forces into biochemical signals. Uniaxial strain models mechanical environments in tendons, ligaments, muscle, and other load-bearing tissues, supporting biomaterial evaluation, tissue engineering, and the development of regenerative therapies.

Uniaxial Strain - Related Videos

Research

JoVE Journal - Biology

Mechanical Stimulation of Stem Cells Using Cyclic Uniaxial Strain

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Cited by 6 •

2007

It is widely understood that mechanical forces in the body can influence cell differentiation and proliferation. Here we present a video protocol demonstrating the use of a custom-built bioreactor for delivering uniaxial cyclic tensile strain to stem cells cultured on flexible micropatterned substrates.

High-resolution Imaging of Nuclear Dynamics in Live Cells under Uniaxial Tensile Strain

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Cited by 1 •

2019

Using a previously designed device to apply mechanical strain to adherent cells, this paper describes a redesigned substratum geometry and a customized apparatus for high-resolution single-cell imaging of strained cells with a 100x oil immersion objective.

Education

JoVE Science Education - Engineering
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Stress-Strain Characteristics of Steels

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2023

Source: Roberto Leon, Department of Civil and Environmental Engineering, Virginia Tech, Blacksburg, VA The importance of materials to human development is clearly captured by the early classifications of world history into periods such as the Stone Age, Iron Age, and the Bronze Age. The introduction of the Siemens and Bessemer processes to produce steels in the mid-1800s is arguably the single most important development in launching the Industrial Revolution that transformed much of Europe and...

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...

Visualizing Uniaxial-strain Manipulation of Antiferromagnetic Domains in Fe1+YTe Using a Spin-polarized Scanning Tunneling Microscope

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Cited by 1 •

2019

Using uniaxial strain combined with spin-polarized scanning tunneling microscopy, we visualize and manipulate the antiferromagnetic domain structure of Fe1+yTe, the parent compound of iron-based superconductors.

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