Passive Mechanical Testing

Passive mechanical testing is a bioengineering approach for characterizing how biological tissues, biomaterials, and engineered constructs respond to externally applied forces without relying on active cellular or muscular contraction. In a typical test, a specimen undergoes controlled tension, compression, shear, or indentation while instruments record force and displacement; these measurements generate stress-strain relationships and quantify properties such as stiffness, strength, elasticity, and viscoelasticity. The results help researchers compare native and engineered tissues, evaluate biomaterial performance, and determine how mechanical environments influence design and function. Passive testing supports tissue engineering, implant development, disease modeling, and validation of computational biomechanical models.

Passive Mechanical Testing - Related Videos

Research

JoVE Journal - Bioengineering

Mechanical Testing of Mouse Carotid Arteries: from Newborn to Adult

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Cited by 31 •

2012

Passive mechanical testing of mouse carotid arteries is described, with special consideration for adapting to different specimen ages. The procedures include determining the in vivo length of the artery, mounting it in a pressure myograph, recording data, measuring the unloaded dimensions and analyzing the resulting data.

Education

JoVE Core - Pharmacology

Drug Absorption Mechanism: Passive Membrane Transport

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2023

Passive transport is a method of drug absorption where small, lipid-soluble drugs can move across the cell membrane. This movement happens along the concentration gradient, which is a natural flow from higher to lower concentration areas. The speed at which the drug moves is directly related to its lipid–water partition coefficient. This means that the more a drug dissolves in lipids, the faster it diffuses or spreads throughout the body. It is important to note that most drugs are either weak...

A Passive Ankle Dorsiflexion Testing System for an In Vivo Model of Overuse-induced Tendinopathy

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Cited by 1 •

2024

This protocol presents a testing system used to induce quantifiable and controlled fatigue injuries in a rat Achilles tendon for an in-vivo model of overuse-induced tendinopathy. The procedure consists of securing the rat's ankle to a joint actuator that performs passive ankle dorsiflexion with a custom-written MATLAB script.

An Improved Mechanical Testing Method to Assess Bone-implant Anchorage

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Cited by 10 •

2014

An improved method to mechanically test bone anchorage to candidate implant surfaces is presented. This method allows for alignment of the disruption force exactly perpendicular, or parallel, to the plane of the implant surface, and provides an accurate means to direct the disruption forces to an exact peri-implant region.

Research

JoVE Journal - Bioengineering
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The Quantification of Injectability by Mechanical Testing

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Cited by 16 •

2020

Presented here is a protocol for quantitatively evaluating the injectability of a material through a syringe-needle system using a standard mechanical testing rig.

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