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Brain State-dependent Brain Stimulation with Real-time Electroencephalography-Triggered Transcranial Magnetic Stimulation08:50

Brain State-dependent Brain Stimulation with Real-time Electroencephalography-Triggered Transcranial Magnetic Stimulation

This paper describes real-time electroencephalography-triggered transcranial magnetic stimulation to study and modulate human brain...
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Non-Invasive Electrical Brain Stimulation Montages for Modulation of Human Motor Function07:47

Non-Invasive Electrical Brain Stimulation Montages for Modulation of Human Motor Function

Non-invasive electrical brain stimulation can modulate cortical function and behavior, both for research and clinical purposes. This protocol describes different brain stimulation approaches for modulation of the human motor...
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Transcranial Magnetic Stimulation for Investigating Causal Brain-behavioral Relationships and their Time Course11:33

Transcranial Magnetic Stimulation for Investigating Causal Brain-behavioral Relationships and their Time Course

Transcranial magnetic stimulation (TMS) is a technique for non-invasively disrupting neural information processing and measuring its effect on behavior. When TMS interferes with a task, it indicates that the stimulated brain region is necessary for normal task performance, allowing one to systematically relate brain regions to cognitive...
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Non-Invasive Electrical Brain Stimulation for Modulating Human Motor Neuron Activity03:49

Non-Invasive Electrical Brain Stimulation for Modulating Human Motor Neuron Activity

Source: Curado, M. et. al., Non-Invasive Electrical Brain Stimulation Montages for Modulation of Human Motor Function. J. Vis. Exp. (2016)This video demonstrates the setup and mechanism of transcranial direct current stimulation (tDCS) for modulating human motor function. By placing the anode over the primary motor cortex and the cathode over the contralateral supraorbital area, the targeted electrical stimulation increases cortical excitability, enhancing motor neuron activity and improving...
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Mouse Cardiac Arrest Model for Brain Imaging and Brain Physiology Monitoring During Ischemia and Resuscitation07:18

Mouse Cardiac Arrest Model for Brain Imaging and Brain Physiology Monitoring During Ischemia and Resuscitation

This protocol demonstrates a unique mouse model of asphyxia cardiac arrest that does not require chest compression for resuscitation. This model is useful for monitoring and imaging the dynamics of brain physiology during cardiac arrest and...
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Using Saccadometry with Deep Brain Stimulation to Study Normal and Pathological Brain Function05:44

Using Saccadometry with Deep Brain Stimulation to Study Normal and Pathological Brain Function

This paper describes the use of quantitative measurement of eye movements in conjunction with stimulation of focal areas of the deep brain in order to study physiology, pathophysiology, and the mechanisms of deep brain...
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