Mechanical Control Relaxation

Mechanical control relaxation describes the regulation of tissue or muscle relaxation through applied mechanical forces, a concept relevant to movement, rehabilitation, and mechanobiology. Mechanical loading, stretching, compression, or altered resistance changes tissue deformation and tension, which can influence contractile behavior and mechanosensitive cellular signaling. In medicine, this framework helps explain how physical forces affect recovery, joint mobility, muscle function, and the design of rehabilitation protocols or assistive devices. Studying these responses can support improved physical therapies, biomaterial design, and models of how tissues adapt to mechanical environments.

Mechanical Control Relaxation - Related Videos

Research

JoVE Journal - Medicine
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Mechanical Control of Relaxation Using Intact Cardiac Trabeculae

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Cited by 2 •

2023

Rapid myocardial and cardiac relaxation is essential for normal physiology. Mechanical relaxation mechanisms are now known to be dependent on strain rate. This protocol provides an overview of the acquisition and analysis of experiments to further study the mechanical control of relaxation.

Research

JoVE Journal - Neuroscience

Mechanical Manipulation of Neurons to Control Axonal Development

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Cited by 10 •

2011

Application and direct measurements of forces on neurons in the 2-1000 microdyne range are achieved with high precision using calibrated glass needles. This methodology can be used to control and measure several aspects of axonal development, including axonal initiation, axonal tension, velocity of axonal elongation, and force vectors.

Evaluation of Vascular Control Mechanisms Utilizing Video Microscopy of Isolated Resistance Arteries of Rats

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2017

This manuscript describes in vitro video microscopy protocols for evaluating vascular function in rat cerebral resistance arteries. The manuscript also describes techniques for evaluating microvessel density with fluorescently labeled lectin and tissue perfusion using Laser Doppler Flowmetry.

Mistletoe Eradicator - A Novel Tool for Simultaneous Mechanical and Chemical Control of Mistletoe

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Cited by 4 •

2022

The protocol describes an easy-to-handle tool called Mistletoe Eradicator which combines mechanical and chemical approaches and is efficient in the control of mistletoe infestation on the host trees. The manuscript uses the European mistletoe (Viscum album subsp. album L.) as an example.

Mesenteric Artery Contraction and Relaxation Studies Using Automated Wire Myography

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Cited by 37 •

2011

An automated myography method for force measurements in isolated mesenteric arteries is described. It employs a Mulvany-Halpern Auto Dual Wire Myograph 510A to determine responses to phenylephrine and extracellular calcium. The method allows consistent determination of isometric responses to agonists in small vessels of diameters of 60 - 300 μm, independently.

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