Potassium Neurovascular Coupling

Potassium neurovascular coupling is the process by which activity-dependent changes in extracellular potassium (K+) help match cerebral blood flow to the metabolic needs of active neural tissue. When neurons fire, K+ leaves cells and accumulates in the extracellular space; nearby astrocytes buffer and redistribute this ion, while elevated perivascular K+ can activate inward-rectifier potassium channels in vascular smooth muscle, causing membrane hyperpolarization and vasodilation. This signaling pathway links electrical activity to local perfusion and contributes to functional hyperemia, the blood-flow response measured in neuroscience studies. Examining it clarifies how ion homeostasis, astrocyte function, and cerebrovascular regulation interact, with relevance to neuroimaging and disorders affecting brain blood-flow control.

Potassium Neurovascular Coupling - Related Videos

Research

JoVE Journal - Bioengineering

Use of Label-free Optical Biosensors to Detect Modulation of Potassium Channels by G-protein Coupled Receptors

0 Views •

Cited by 5 •

2014

Optical biosensor techniques can detect changes in mass near the plasma membrane in living cells and allow one to follow cellular responses in both individual cells and populations of cells. This protocol will describe detection of the modulation of potassium channels by G-protein coupled receptors in intact cells using this approach.

Generation of a Neurovascular Unit

0 Views •

2025

Suspend the cell mixture in an extracellular matrix or ECM solution.

A Method for the Isolation of Neurovascular Units from Rat Brain

0 Views •

2025

This video demonstrates the process of isolating brain microvessels from euthanized rats. It includes the dissection of the brain, cleaning of the tissue, and mechanical digestion, followed by repeated centrifugation to isolate the pure fraction of microvessels.

Skeletal Muscle Neurovascular Coupling, Oxidative Capacity, and Microvascular Function with 'One Stop Shop' Near-infrared Spectroscopy

0 Views •

Cited by 5 •

2018

Here, we describe a simple, non-invasive approach using near-infrared spectroscopy to assess reactive hyperemia, neurovascular coupling and skeletal muscle oxidative capacity in a single clinic or laboratory visit.

Education

JoVE Science Education - Environmental Sciences
Free Sample

Soil Nutrient Analysis: Nitrogen, Phosphorus, and Potassium

0 Views •

2023

Source: Laboratories of Margaret Workman and Kimberly Frye - Depaul University In this experiment, three soil macronutrients are chemically extracted, combined with color-based reagents, then analyzed using color to determine the nutrient concentration present in the soil sample. Nitrogen, phosphorus, and potassium are the main components of soil fertilizer. These methods isolate each nutrient from the soil into a solution that can be analyzed using turbidity and color to determine the...

View All Results

FAQs

Related Topics