Cortical Underconnectivity

Cortical underconnectivity is a pattern in which communication or coordinated activity between regions of the cerebral cortex is reduced or less synchronized than expected, making it relevant to neurological and psychiatric medicine. It can reflect atypical structural pathways, altered white-matter integrity, or disrupted functional coupling, and researchers assess it using methods such as diffusion MRI, functional MRI, and electroencephalography. The pattern has been investigated in conditions including autism, schizophrenia, and other disorders involving cognition or perception, where it may help explain difficulties with information integration. Studying cortical underconnectivity may support biomarker development and more targeted diagnosis and treatment research.

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Research

JoVE Journal - Neuroscience

Isolation and Culture of Mouse Cortical Astrocytes

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Cited by 460 •

2013

Astrocytes have been recognized to be versatile cells participating in fundamental biological processes that are essential for normal brain development and function, and central nervous system repair. Here we present a rapid procedure to obtain pure mouse astrocyte cultures to study the biology of this major class of central nervous system cells.

Visualization of Cortical Modules in Flattened Mammalian Cortices

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Cited by 27 •

2018

This article describes a detailed methodology to obtain flattened tangential sections from mammalian cortices and visualize cortical modules using histochemical and immunohistochemical methods.

In vivo Imaging of Deep Cortical Layers using a Microprism

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Cited by 11 •

2009

Right-angle microprisms inserted into the mouse neocortex allows for deep imaging of multiple cortical layers with a viewpoint typically found in slice. One-millimeter microprisms offer a wide field-of-view (~900 μm) and spatial resolutions sufficient to resolve dendritic spines. We demonstrate layer V neuronal imaging and neocortical vascular imaging using microprisms.

Detection of Neuronal Aging in a Cortical Organoid Section

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2025

This video demonstrates the method of detecting aging neurons in cortical organoid sections by staining for beta-galactosidase activity, which is elevated in senescent cells. The enzyme cleaves a substrate to produce a blue product, followed by microscopic observation of the stained neurons.

Calcium Imaging of Cortical Neurons using Fura-2 AM

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Cited by 108 •

2009

Calcium signals play a key role in many cellular processes including gene expression, survival and differentiation. Here we demonstrate how to perform calcium imaging using Fura-2 AM. Calcium imaging is a valuable tool to study the regulation of intracellular calcium in real time and its regulation of signaling cascades.

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