Actomyosin Belts

Actomyosin belts are contractile rings of filamentous actin and myosin motors that generate mechanical tension in cells, making them central to tissue organization and shape change. Myosin II pulls on actin filaments, while the network connects to cell-cell adhesion complexes, allowing contractile forces to be transmitted across epithelial sheets. In biology, these belts help drive epithelial folding, cell constriction, wound closure, and aspects of cytokinesis during development and repair. Studying their assembly, regulation, and mechanics links molecular activity to tissue-scale behavior and helps explain how cells coordinate movement, adhesion, and morphogenesis.

Actomyosin Belts - Related Videos

Research

JoVE Journal - Engineering

Fabrication and Operation of a Nano-Optical Conveyor Belt

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2015

The scalability and resolution of conventional optical manipulation techniques are limited by diffraction. We circumvent the diffraction limit and describe a method of optically transporting nanoparticles across a chip using a gold surface patterned with a path of closely spaced C-shaped plasmonic resonators.

Education

JoVE Core - Mechanical Engineering

Frictional Forces on Flat Belts

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2023

Flat belts are commonly used in various industrial applications for transmitting power from one pulley to another. When a flat belt is wrapped around a set of pulleys, it experiences different tensions at the driving pulley ends due to the friction between the belt and pulley surface. When the pulley moves in a counterclockwise direction, the tension T2 on the opposite side of the pulley where the belt is moving away from is higher than the tension T1 on the side where the belt is moving...

Using a Split-belt Treadmill to Evaluate Generalization of Human Locomotor Adaptation

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Cited by 14 •

2017

We describe a protocol for investigating human locomotor adaptation using the split-belt treadmill, which has two belts that can drive each leg at a different speed. We specifically focus on a paradigm designed to test the generalization of adapted locomotor patterns to different walking contexts (e.g., gait speeds, walking environments).

Flat Belts: Problem Solving

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2023

Flat belts are crucial in many industrial applications as they help transmit power from one pulley to another. The concept of forces and moments is used to determine the maximum moment on a pulley. For instance, consider a flat belt that wraps around two pulleys, A and B, with radii of 30 cm and 10 cm, respectively. The angle between the belt and the horizontal is 20 degrees at the pulleys. As pulley B rotates clockwise and drives pulley A, tension T2 is caused at one end of the belt, while...

The Mechanics of (Poro-)Elastic Contractile Actomyosin Networks As a Model System of the Cell Cytoskeleton

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Cited by 3 •

2023

In this work, an in vitro reconstitution approach is employed to study the poroelasticity of actomyosin gels under controlled conditions. The dynamics of the actomyosin gel and the embedded solvent are quantified, through which the network poroelasticity is demonstrated. We also discuss the experimental challenges, common pitfalls, and relevance to cell cytoskeleton mechanics.

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