Brodmann Areas

Brodmann areas are numbered regions of the cerebral cortex classified by differences in cellular organization, providing a foundational map for studying brain structure and function. Using cytoarchitecture, researchers distinguish regions by features such as cortical layering, neuron density, and cell arrangement, then compare these anatomical patterns with functional, connectivity, and clinical data. In neuroscience, Brodmann areas help organize knowledge about sensory processing, motor control, language, memory, and higher cognition, while supporting interpretation of neuroimaging, electrophysiology, and lesion studies. Although modern research refines these boundaries, the map remains a useful framework for linking cortical anatomy to behavior and disease.

Brodmann Areas - Related Videos

Education

JoVE Science Education - Advanced Biology

An Introduction to Neuroanatomy

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2023

Neuroanatomy is the study of nervous system structures and how they relate to function. One focus of neuroanatomists is the macroscopic structures within the central and peripheral nervous systems, like the cortical folds on the surface of the brain. However, scientists in this field are also interested in the microscopic relationships between neurons and glia - the two major cell types of the nervous system. This video provides a brief overview of the history of neuroanatomical research,...

Research

JoVE Journal - Chemistry

The Effect of Ultraviolet Radiation on the Chemical Bath Deposition of Bis(thiourea) Cadmium Chloride Crystals and the Subsequent CdS Obtention

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Cited by 2 •

2018

This article presents a protocol for the synthesis of bis(thiourea) cadmium chloride crystals by chemical bath deposition. Two experiments are described: one aided by ultraviolet light compared to one without ultraviolet light.

Quantification of Cytosolic vs. Vacuolar Salmonella in Primary Macrophages by Differential Permeabilization

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Cited by 19 •

2015

We describe the quantification of cytosolic and vacuolar Salmonella typhimurium in bone-marrow derived macrophages using differential digitonin permeabilization.

Strain Sensing Based on Multiscale Composite Materials Reinforced with Graphene Nanoplatelets

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Cited by 4 •

2016

The integration of conductive nanoparticles, such as graphene nanoplatelets, into glass fiber composite materials creates an intrinsic electrical network susceptible to strain. Here, different methods to obtain strain sensors based on the addition of graphene nanoplatelets into the epoxy matrix or as a coating on glass fabrics are proposed.

Preparation of a Corannulene-functionalized Hexahelicene by Copper(I)-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units

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Cited by 1 •

2016

Here, we present a protocol to synthesize a complex organic compound comprised of three nonplanar polyaromatic units, assembled easily with reasonable yields.

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