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Related Concept Videos

Association Areas of the Cortex01:21

Association Areas of the Cortex

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Association areas are regions of the cerebral cortex that do not have a specific sensory or motor function. Instead, they integrate and interpret information from various sources to enable higher cognitive processes such as memory, learning, and decision-making. Some key association areas include the following:
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The cerebral cortex, the brain's outermost layer, is pivotal in processing complex cognitive tasks, emotions, and various sensory inputs and executing voluntary motor activities. This intricate structure is divided into three primary functional areas: the motor areas, sensory areas, and association areas.
Motor Areas
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Introduction:Magnetic Resonance Imaging, or MRI, can include a specialized imaging technique of the urinary system known as Magnetic Resonance Urography (MRU). This radiation-free technique uses strong magnetic fields and radio waves to produce detailed images with the help of a computer. MRU is particularly effective for visualizing fluid-filled structures like the kidneys, ureters, and bladder.Applications of MRI in the Genitourinary SystemKidneys and Ureters: MRI detects tumors, cysts,...
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Magnetic resonance imaging (MRI) is a noninvasive medical imaging technique based on a phenomenon of nuclear physics discovered in the 1930s, in which matter exposed to magnetic fields and radio waves was found to emit radio signals. In 1970, a physician and researcher named Raymond Damadian noticed that malignant (cancerous) tissue gave off different signals than normal body tissue. He applied for a patent for the first MRI scanning device in clinical use by the early 1980s. The early MRI...
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Related Experiment Video

Updated: Apr 26, 2026

Correlating Behavioral Responses to fMRI Signals from Human Prefrontal Cortex: Examining Cognitive Processes Using Task Analysis
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Monkey cortex through fMRI glasses.

Wim Vanduffel1, Qi Zhu2, Guy A Orban3

  • 1Laboratory for Neuro- and Psychophysiology, KU Leuven Medical School, Campus Gasthuisberg, Leuven, 3000, Belgium; Department of Radiology, Harvard Medical School, Boston, MA 02129, USA; A.A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Charlestown, MA 02129, USA.

Neuron
|August 8, 2014
PubMed
Summary
This summary is machine-generated.

Functional magnetic resonance imaging (fMRI) in awake monkeys offers insights into brain function, bridging primate research and human imaging. This review covers visual system studies, connectivity, and comparative research, advancing neuroscience.

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Area of Science:

  • Neuroscience
  • Cognitive Neuroscience
  • Primate Research

Background:

  • Functional magnetic resonance imaging (fMRI) in nonhuman primates began in 1998.
  • It bridges invasive primate studies with human functional imaging.
  • fMRI provides insights into the Blood-Oxygen-Level-Dependent (BOLD) signal's neuronal basis.

Purpose of the Study:

  • To provide a comprehensive overview of awake monkey fMRI studies.
  • Focus on the visual system, parietal and frontal cortex.
  • Review functional and effective connectivity, and comparative fMRI experiments.

Main Methods:

  • Review of published awake monkey fMRI studies.
  • Analysis of visual system organization, retinotopy, and feature-selective clusters.
  • Summary of connectivity studies and comparative fMRI.

Main Results:

  • Detailed insights into the topographic organization of the monkey visual cortex.
  • Understanding spatial relationships between retinotopy and selective clusters.
  • Advancements in functional and effective connectivity research.

Conclusions:

  • Awake monkey fMRI is a valuable tool for neuroscience.
  • It enhances understanding of brain evolution and function.
  • Future directions include further comparative studies and technological advancements.