Mirror Neurons

Mirror neurons are brain cells that become active when an individual performs an action and when they observe another individual performing a similar action, linking perception and action. First identified in the macaque premotor cortex, these neurons may respond when an observed movement matches an internally represented motor pattern, helping the brain map visual information onto its own action system. In psychology, mirror neuron research informs theories of imitation, action understanding, empathy, and social learning. Studies using brain imaging and behavioral measures examine whether comparable mirror systems operate in humans, while ongoing research evaluates their role in communication, development, and disorders affecting social cognition.

Mirror Neurons - Related Videos

Education

JoVE Science Education - Psychology

Motor Learning in Mirror Drawing

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2023

Source: Laboratory of Jonathan Flombaum—Johns Hopkins University Colloquially, the terms learning and memory encompass a broad range of behaviors and mental systems, everything from learning to tie a shoe to mastering calculus (and a lot in between). Experimental psychologists have divided up learning mechanisms into groups that seem to have different properties, and that seem to rely on different brain systems. A major division is between declarative and non-declarative memory, roughly, the...

Research

JoVE Journal - Bioengineering

Robotic Mirror Therapy System for Functional Recovery of Hemiplegic Arms

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Cited by 26 •

2016

We developed a real-time mirror robot system for functional recovery of hemiplegic arms using automatic control technology, conducted a clinical study on healthy subjects, and determined tasks through feedback from rehabilitation doctors. This simple mirror robot can be applied effectively to occupational therapy in stroke patients with a hemiplegic arm.

Aggression Assay: A Method to Study Aggressive Behavior of Zebrafish in Response to a Mirror

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2023

The article describes an assay for studying zebrafish’s aggression. The method uses a simple mirror and observes zebrafish’s behavioral response towards its own reflection in mirror.

Gain-compensation Methodology for a Sinusoidal Scan of a Galvanometer Mirror in Proportional-Integral-Differential Control Using Pre-emphasis Techniques

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Cited by 4 •

2017

We propose a method to extend the corresponding frequency by using a pre-emphasis technique. This method compensates for the gain reduction of a galvanometer mirror in sine-wave path tracking using proportional-integral-differential control.

In vivo Neuronal Calcium Imaging in C. elegans

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Cited by 20 •

2013

With its small transparent body, well-documented neuroanatomy and a host of amenable genetic techniques and reagents, C. elegans makes an ideal model organism for in vivo neuronal imaging using relatively simple, low-cost techniques. Here we describe single neuron imaging within intact adult animals using genetically encoded fluorescent calcium indicators.

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