Cortical Hemisphere Imaging

Cortical hemisphere imaging refers to methods that visualize the structure, organization, and activity of the brain’s left and right cerebral hemispheres, supporting investigation of how the cortex processes information. Depending on the modality, images are generated by detecting changes in tissue properties, blood flow, oxygenation, or electrical and magnetic signals, often allowing cortical regions to be compared across hemispheres. In neuroscience, these approaches help map functional specialization, study connectivity and lateralization, and characterize changes associated with development, neurological disease, injury, or treatment. Combining anatomical and functional imaging can link cortical structure with behavior and cognitive performance.

Cortical Hemisphere Imaging - Related Videos

Research

JoVE Journal - Neuroscience

Ex utero Electroporation and Whole Hemisphere Explants: A Simple Experimental Method for Studies of Early Cortical Development

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Cited by 14 •

2013

This protocol describes an improved explant procedure that involves ex utero electroporation, dissection and culture of entire cerebral hemispheres from the embryonic mouse. The preparation facilitates pharmacological studies and assays of gene function during early cortical development.

Assessing Cortical Cerebral Microinfarcts on High Resolution MR Images

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Cited by 24 •

2015

A high resolution ex vivo 7T MR imaging protocol is presented, to perform MR-guided histopathological validation of microvascular pathology in post-mortem human brain tissue. Furthermore, guidelines are provided for the assessment of cortical microinfarcts on in vivo 7T as well as 3T MR images.

How to Measure Cortical Folding from MR Images: a Step-by-Step Tutorial to Compute Local Gyrification Index

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Cited by 168 •

2012

Measuring gyrification (cortical folding) at any age represents a window into early brain development. Hence, we previously developed an algorithm to measure local gyrification at thousands of points over the hemisphere1. In this paper, we detail the computation of this local gyrification index.

Research

JoVE Journal - Neuroscience
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Functional Calcium Imaging in Developing Cortical Networks

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Cited by 32 •

2011

Spontaneous activity of developing neuronal networks can be measured using AM-ester forms of calcium-sensitive indicator dyes. Changes in intracellular calcium, indicating neuronal activation, are detected as transient changes in indicator fluorescence with one- or two-photon imaging. This protocol can be adapted for a range of developmentally-dependent neuronal networks in vitro.

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.

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