Single Pulse Tms

Single-pulse transcranial magnetic stimulation (TMS) is a noninvasive method that briefly stimulates the brain, primarily the cerebral cortex, to assess neural function. A magnetic coil placed against the scalp generates a rapidly changing magnetic field, which induces an electric current in underlying cortical tissue and can trigger neuronal depolarization. In medicine and neurophysiology, single-pulse TMS is used to map motor areas, evoke measurable muscle responses, and evaluate corticospinal excitability and conduction. These measurements support studies of brain connectivity, neurological disorders, and treatment effects, while providing a controlled way to investigate how cortical circuits respond to stimulation.

Single Pulse Tms - Related Videos

Education

JoVE Science Education - Psychology

Using TMS to Measure Motor Excitability During Action Observation

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2023

Source: Laboratories of Jonas T. Kaplan and Sarah I. Gimbel—University of Southern California Transcranial Magnetic Stimulation (TMS) is a non-invasive brain stimulation technique that involves passing current through an insulated coil placed against the scalp. A brief magnetic field is created by current in the coil, and because of the physical process of induction, this leads to a current in the nearby neural tissue. Depending on the duration, frequency, and magnitude of these magnetic...

Research

JoVE Journal - Neuroscience

State-Dependency Effects on TMS: A Look at Motive Phosphene Behavior

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Cited by 4 •

2010

In this article, we examine the effects of visually relevant state dependency on TMS induced motive phosphenic presentations.

Research

JoVE Journal - Neuroscience
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The NeuroStar TMS Device: Conducting the FDA Approved Protocol for Treatment of Depression

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Cited by 83 •

2010

In this article, we examine the methodology and considerations relevant to the FDA approved depression treatment protocol using the Neuronetics NeuroStar TMS device.

TMS: Using the Theta-Burst Protocol to Explore Mechanism of Plasticity in Individuals with Fragile X Syndrome and Autism

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Cited by 7 •

2010

In this article, we examine the effects of Theta-Burst TMS stimulation on cortical plasticity in individuals suffering from Fragile X syndrome and individuals on the autistic spectrum.

Pulse

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2024

When the heart pumps blood out, arterial elastic fibers play a crucial role in sustaining a high-pressure gradient. They expand to accommodate the received blood and then recoil - a process known as the pulse that can be either manually palpated or electronically quantified. Despite a reduction in its effect with increased distance from the heart, elements of the pulse's systolic and diastolic components persist, observable even at the arteriole level. The pulse serves as a clinical indicator...

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