Volkmann Canals

Volkmann canals are transverse or oblique channels in compact bone that connect the vascular spaces of neighboring osteons with the periosteum and endosteum, helping sustain living bone tissue. Unlike Haversian canals, which typically run longitudinally within osteons, Volkmann canals pass across or between them and carry blood vessels and nerves through the lamellar matrix, linking internal bone tissue with surrounding surfaces. In biology and histology, identifying these perforating canals clarifies how nutrients and signals reach osteocytes, how osteons communicate with surrounding tissues, and how bone responds to injury, remodeling demands, and mechanical loading.

Volkmann Canals - Related Videos

Research

JoVE Journal - Environment

Capturing Flow-weighted Water and Suspended Particulates from Agricultural Canals During Drainage Events

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Cited by 2 •

2017

Nutrients present in particulate form can contribute significantly to the overall loads in agricultural drainage waters. This study describes a novel method to capture flow-weighted water and suspended particulates from farm canal drainage over the entire duration of the drainage event.

Research

JoVE Journal - Medicine
Free Sample

Testing of all Six Semicircular Canals with Video Head Impulse Test Systems

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Cited by 26 •

2019

This protocol describes how to correctly perform the video head impulse test with two separate test systems commonly used worldwide. Both the 2D and 3D video head impulse test methods are described.

The C. elegans Excretory Canal as a Model for Intracellular Lumen Morphogenesis and In Vivo Polarized Membrane Biogenesis in a Single Cell: labeling by GFP-fusions, RNAi Interaction Screen and Imaging

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Cited by 6 •

2017

The C. elegans excretory canal is a unique single-cell model for the visual in vivo analysis of de novo polarized membrane biogenesis. This protocol describes a combination of standard genetic/RNAi and imaging approaches, adaptable for the identification and characterization of molecules directing unicellular tubulogenesis, and apical membrane and lumen biogenesis.

Posterior Semicircular Canal Approach for Inner Ear Gene Delivery in Neonatal Mouse

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Cited by 37 •

2018

In this study, we describe the posterior semicircular canal approach as a reliable method for inner ear gene delivery in neonatal mice. We show that gene delivery through the posterior semicircular canal is able to perfuse the entire inner ear.

Microelectrode Guided Implantation of Electrodes into the Subthalamic Nucleus of Rats for Long-term Deep Brain Stimulation

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Cited by 8 •

2015

A method for implanting electrodes into the subthalamic nucleus (STN) of rats is described. Better localization of the STN was achieved by using a microrecording system. Furthermore, a stimulation set-up is presented that is characterized by long-lasting connections between the head of the animal and the stimulator.

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