Dense Bodies

Dense bodies are cytoskeletal anchoring structures in smooth muscle cells that organize contractile proteins and transmit force throughout the cell. Located in the cytoplasm or attached to the plasma membrane, they anchor actin filaments and intermediate filaments, serving a role comparable to Z-discs in striated muscle; when myosin interacts with actin, tension passes through these attachment sites to produce cell shortening. Understanding dense bodies helps explain smooth muscle contraction in blood vessels, airways, and the gastrointestinal tract. Their organization is also relevant to studies of muscle physiology, tissue mechanics, and diseases involving impaired contractility or cellular architecture.

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Research

JoVE Journal - Engineering

Formation of Thick Dense Yttrium Iron Garnet Films Using Aerosol Deposition

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Cited by 7 •

2015

This report describes the use of a custom-built system to perform aerosol deposition of thick films of yttrium iron garnet onto sapphire substrates at RT. The deposited films are characterized using scanning electron microscopy, profilometry, and ferromagnetic resonance to give a representative overview of the capabilities of the technique.

Education

JoVE Core - Anatomy and Physiology
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Dense Connective Tissue

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2025

Dense connective tissue contains more collagen fibers than loose connective tissue. As a consequence, it displays greater resistance to stretching. There are two major categories of dense connective tissue— regular and irregular. Dense Regular Connective Tissue In dense regular connective tissue, fibers are arranged parallel to each other, enhancing its tensile strength and resistance to stretching in the direction of the fiber orientations. Ligaments and tendons are made of dense regular...

Research

JoVE Journal - Neuroscience
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Investigating Social Cognition in Infants and Adults Using Dense Array Electroencephalography (dEEG)

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Cited by 2 •

2011

Dense array electroencephalography is being used increasingly to study social cognitive functions in infants and adults. Here we present an established methodology that represents a significant improvement on conventional methodologies for studying EEG in infants and adults.

Live Imaging of Dense-core Vesicles in Primary Cultured Hippocampal Neurons

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Cited by 10 •

2009

Live cell imaging is of particular utility when studying the dynamics of organelle trafficking. Here we describe a protocol for live imaging of dense-core vesicles in cultured neurons using wide-field fluorescence microscopy. This protocol is flexible and can be adapted to image other organelles such as mitochondria, endosomes, and peroxisomes.

Super-resolution Imaging of Neuronal Dense-core Vesicles

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Cited by 3 •

2014

We describe how to implement photoactivated localization microscopy (PALM)-based studies of vesicles in fixed, cultured neurons. Key components of our protocol include labeling vesicles with photoconvertible chimeras, collecting sparsely sampled raw images with a super-resolution microscopy system, and processing the raw images to produce a super-resolution image.

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