Cochlear Blood Flow

Cochlear blood flow is the circulation that supplies the inner ear’s cochlea, supporting the high metabolic demands of hearing and helping maintain the chemical gradients required for sensory transduction. Blood reaches cochlear tissues through the labyrinthine arterial supply and a specialized microvascular network, where regulated exchange delivers oxygen and nutrients while removing metabolic waste. Changes in this circulation can affect cochlear function because hair cells and supporting tissues have limited tolerance for oxygen deprivation. Measuring cochlear blood flow therefore contributes to research on hearing loss, noise injury, ototoxicity, vascular disorders, and therapies designed to protect or restore auditory function.

Cochlear Blood Flow - Related Videos

Research

JoVE Journal - Developmental Biology

Culture of Embryonic Mouse Cochlear Explants and Gene Transfer by Electroporation

0 Views •

Cited by 17 •

2015

We present a method that describes isolation and culture of cochlear explants from embryonic mouse inner ear. We also demonstrate a method for gene transfer into cochlear explants via square-wave electroporation. The in vitro explant culture coupled with gene transfer technique enables researchers to study the effects of altering gene expression during development.

Developing a Cerebral Blood Flow Atlas for Blood Flow Mapping

0 Views •

2025

Source: Tan, Z., et al., Construction and Application of Cerebral Functional Region-Based Cerebral Blood Flow Atlas Using Magnetic Resonance Imaging-Arterial Spin Labeling. J. Vis. Exp. (2024).This video demonstrates the method to construct a cerebral blood flow atlas by integrating magnetic resonance imaging or MRI-arterial spin labeling data with segmented brain regions, visualizing blood flow patterns, and quantifying flow levels across functional areas.

Education

JoVE Core - Biology

Blood Flow

0 Views •

2025

Blood is pumped by the heart into the aorta, the largest artery in the body, and then into increasingly smaller arteries, arterioles, and capillaries. The velocity of blood flow decreases with increased cross-sectional blood vessel area. As blood returns to the heart through venules and veins, its velocity increases. The movement of blood is encouraged by smooth muscle in the vessel walls, the movement of skeletal muscle surrounding the vessels, and one-way valves that prevent backflow. Slow...

Autoregulation of Blood Flow

0 Views •

2024

Autoregulation mechanisms are characterized by their inherent capacity for self-regulation without necessitating specific nervous stimulation or endocrine control. These mechanisms facilitate the adjustment of blood flow and, therefore, perfusion specific to each tissue region. This self-regulation encompasses chemical signals and myogenic controls. Chemical Signaling in Autoregulation Chemical signaling operates at the precapillary sphincter level, inciting either contraction or relaxation.

Direct Visualization of the Murine Dorsal Cochlear Nucleus for Optogenetic Stimulation of the Auditory Pathway

0 Views •

Cited by 10 •

2015

The goal of this protocol is to outline a surgical approach to provide direct access to the dorsal cochlear nucleus in a murine model.

View All Results

FAQs

Related Topics