Cortical Surface Analysis

Cortical surface analysis is a set of neuroimaging methods used to reconstruct and quantify the folded outer layer of the brain, providing measures of its structure and organization. Typically, high-resolution magnetic resonance images are processed to identify the gray matter boundaries, generate a three-dimensional cortical surface, and calculate features such as cortical thickness, surface area, curvature, and sulcal patterns. In neuroscience, these measurements help characterize brain development, aging, individual variability, and structural changes associated with neurological or psychiatric disorders. Comparing cortical surfaces across participants or time points can reveal region-specific patterns that support studies of brain function, disease mechanisms, and treatment outcomes.

Cortical Surface Analysis - Related Videos

Research

JoVE Journal - Behavior

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.

Quantification of Hydrogen Concentrations in Surface and Interface Layers and Bulk Materials through Depth Profiling with Nuclear Reaction Analysis

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Cited by 21 •

2016

We illustrate the application of 1H(15N,αγ)12C resonant nuclear reaction analysis (NRA) to quantitatively evaluate the density of hydrogen atoms on the surface, in the volume, and at an interfacial layer of solid materials. The near-surface hydrogen depth profiling of a Pd(110) single crystal and of SiO2/Si(100) stacks is described.

Research

JoVE Journal - Environment
Free Sample

Protocol for Microplastics Sampling on the Sea Surface and Sample Analysis

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Cited by 186 •

2016

The protocol below describes the methodology for: microplastics sampling on the sea surface, separation of microplastic and chemical identification of particles. This protocol is in line with the recommendations for microplastics monitoring published by the MSFD Technical Subgroup on Marine Litter.

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.

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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