Cortical Surface Reconstruction

Cortical surface reconstruction is a neuroimaging technique that creates a three-dimensional model of the brain’s cerebral cortex from structural magnetic resonance imaging (MRI) data. The process identifies tissue boundaries, particularly the gray matter–white matter interface and the pial surface, then converts these boundaries into a computational mesh that represents cortical folding, thickness, and surface area. In medicine and neuroscience, these models support visualization of cortical anatomy, measurement of regional changes, and comparison across individuals or clinical groups. They can aid research on brain development, aging, neurological disease, and treatment-related structural changes.

Cortical Surface Reconstruction - Related Videos

Research

JoVE Journal - Medicine

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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Surface Electromyographic Biofeedback as a Rehabilitation Tool for Patients with Global Brachial Plexus Injury Receiving Bionic Reconstruction

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Cited by 13 •

2019

Optimal functional outcomes after bionic reconstruction in patients with global brachial plexus injury depend on a structured rehabilitation protocol. Surface electromyographic guided training may improve the amplitude, separation and consistency of EMG signals, which - after elective amputation of a functionless hand - control and drive a prosthetic hand.

Cortical Source Analysis of High-Density EEG Recordings in Children

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Cited by 6 •

2014

In recent years, there has been increasing interest in estimating the cortical sources of scalp measured electrical activity for cognitive neuroscience experiments. This article describes how high density EEG is acquired and how recordings are processed for cortical source estimation in children from the age of 2 years at the London Baby Lab.

Focused Ion Beam Scanning Electron Microscopy for 3D Reconstruction of Synaptically Linked Neurons

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2025

Take a fixed section of mouse cortical brain tissue exhibiting neuronal axons and dendrites. The dendrites possess protrusions, known as dendritic spines, which form synapses with axons.Incubate the tissue with osmium-ferrocyanide, which binds to lipids, followed by another osmium application, which enhances structural contrast for imaging.Stain with a heavy metal compound that binds to macromolecules and enhances contrast.Dehydrate using increasing alcohol concentrations for resin...

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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