Brain Stem Action

Brain stem action refers to the neural activity and regulatory functions carried out by the brain stem, which links the brain with the spinal cord and supports essential processes such as breathing, cardiovascular control, arousal, and protective reflexes. In pharmacology, drugs influence these functions by altering neurotransmitter signaling in brain stem pathways, changing the activity of receptors and neurons that coordinate autonomic and motor responses. Studying these effects helps explain how medicines produce therapeutic outcomes, adverse reactions, sedation, or respiratory depression, while also supporting the development and safer use of drugs that act on central nervous system circuits.

Brain Stem Action - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Generating Brain Endothelial Cells from Induced Pluripotent Stem Cells

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2025

This video demonstrates a protocol to induce the differentiation of induced pluripotent stem cells into brain endothelial cells.

Research

JoVE Journal - Behavior
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Corticospinal Excitability Modulation During Action Observation

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Cited by 22 •

2013

Single-pulse transcranial magnetic stimulation over the primary motor cortex, neuronavigation, and registration of electromyographic activity of hand muscles were used in this study to explore corticospinal excitability while participants were observing action sequences.

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...

Growing Neural Stem Cells from Conventional and Nonconventional Regions of the Adult Rodent Brain

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Cited by 7 •

2013

Neural stem cells harvested from the adult brain are increasing utilized in applications ranging from the basic research of nervous system development to exploring potential clinical applications in regenerative medicine. This makes rigorous control in the isolation and culturing conditions used to grow these cells critical to sound experimental outcomes.

Analyzing Neural Stem Cell Reactivation in Cultured Drosophila Brain Explants

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2025

This video demonstrates a protocol to identify exogenous factors that initiate the reactivation of Drosophila brain neural stem cells from their quiescent state. Freshly hatched larvae are dissected to isolate their brains, which are then cultured in media with or without a test hormone to evaluate the hormone's potential to induce neural stem cell reactivation and proliferation.

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