Periventricular Tissue

Periventricular tissue is the brain tissue surrounding the cerebral ventricles, fluid-filled cavities that contain cerebrospinal fluid (CSF), and it is important for communication between ventricular fluid and neural cells. Its organization includes the ependymal lining and nearby specialized regions such as the subventricular zone; ependymal cells help regulate the CSF–brain interface, while local cellular signals influence neural activity and, in some areas, neural progenitor behavior. In neuroscience, studying periventricular tissue helps researchers investigate brain development, adult neurogenesis, ventricular enlargement, hydrocephalus, and injuries that disrupt tissue adjacent to the ventricles. Imaging, histology, and molecular analyses reveal how these regions respond to disease and may support diagnostic and regenerative strategies.

Periventricular Tissue - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Establishing a Co-Culture of Interneurons with Periventricular Endothelial Cells

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2025

This video demonstrates a technique for establishing a co-culture of interneurons with perivascular endothelial cells. The cells are added to a one-well insert placed inside a culture dish. After the cells adhere to the dish, the insert is removed, allowing the cells to proliferate and interact and form a co-culture.

Assessing Interneuron Response to Chemoattractive Cues from Periventricular Endothelial Cells

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2025

This video shows a method to test interneuron migration in response to chemoattractive cues from periventricular endothelial cells (PVECs). Interneurons are placed in a central compartment, with PVECs and control cells on either side. Increased migration towards PVECs indicates a positive response to their chemoattractive signals.

3D Modeling of the Lateral Ventricles and Histological Characterization of Periventricular Tissue in Humans and Mouse

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Cited by 17 •

2015

Using MRI scans (human), 3D imaging software, and immunohistological analysis, we document changes to the brain’s lateral ventricles. Longitudinal 3D mapping of lateral ventricle volume changes and characterization of periventricular cellular changes that occur in the human brain due to aging or disease are then modeled in mice.

Isolation of Neural Stem Progenitor Cells from the Spinal Cord Periventricular Region of an Adult Rat

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2025

This video presents a method for isolating neural stem/progenitor cells from the periventricular tissue of the spinal cord in adult rats. The technique includes incubating the tissue fragments in a solution containing proteolytic enzymes to disrupt the extracellular matrix and release the cells. Subsequently, the released cells are plated in a medium containing specific growth factors that enhance neural stem/progenitor proliferation and promote aggregation into three-dimensional neurospheres.

Isolation of Neural Stem/Progenitor Cells from the Periventricular Region of the Adult Rat and Human Spinal Cord

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Cited by 23 •

2015

The adult mammalian spinal cord contains neural stem/progenitor cells (NSPCs) that can be isolated and expanded in culture. This protocol describes the harvesting, isolation, culture, and passaging of NSPCs generated from the periventricular region of the adult spinal cord from the rat and from human organ transplant donors.

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