Human Ear Sensitivity

Human ear sensitivity is the ear’s ability to detect and distinguish sound pressure variations across different frequencies, making it a key topic in acoustics and sensory physics. Sound waves move the eardrum and ossicles, which transfer vibrations to fluid in the cochlea; frequency-dependent motion along the basilar membrane stimulates hair cells, converting mechanical energy into neural signals. Sensitivity is not uniform: the ear responds more readily to some frequencies and changes with sound level, a relationship represented through hearing thresholds and decibel measurements. Understanding these principles supports audio engineering, noise assessment, hearing research, and the design of safer acoustic environments.

Human Ear Sensitivity - Related Videos

Research

JoVE EoE - Neurotherapeutics

Transcutaneous Auricular Vagus Nerve Stimulation on the Human Ear

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2025

Source: Badran, B. W., et al. Laboratory Administration of Transcutaneous Auricular Vagus Nerve Stimulation (taVNS): Technique, Targeting, and Considerations. J. Vis. Exp. (2019)This video demonstrates transcutaneous auricular vagus nerve stimulation (taVNS), a noninvasive method for modulating brain activity. Electrodes are placed on the anterior wall of the outer ear canal and the tragus, targeting the auricular branch of the vagus nerve (ABVN). When stimulated, the resulting nerve impulse...

Education

JoVE Science Education - Clinical Skills

Ear Exam

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2023

Source: Richard Glickman-Simon, MD, Assistant Professor, Department of Public Health and Community Medicine, Tufts University School of Medicine, MA This video describes the examination of the ear, beginning with a review of its surface and interior anatomy (Figure 1). The cartilaginous auricle consists of the helix, antihelix, earlobe, and tragus. The mastoid process is positioned just behind the earlobe. The slightly curving auditory canal ends at the tympanic membrane, which transmits sound...

Gross and Fine Dissection of Inner Ear Sensory Epithelia in Adult Zebrafish (Danio rerio)

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Cited by 25 •

2009

The inner ear sensory epithelium of adult zebrafish is a good model system for understanding the mechanisms of hair cell regeneration in adult vertebrates. This protocol demonstrates the fine dissection of the epithelia, through which we can get tissue samples for studying the regenerative events at cellular and subcellular levels.

In Vivo Morphometric Analysis of Human Cranial Nerves Using Magnetic Resonance Imaging in Menière's Disease Ears and Normal Hearing Ears

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Cited by 4 •

2018

To evaluate morphological changes of cranial nerves such as loss of neural structures or swelling of cranial nerves in Menière's Disease (MD) or in healthy persons in vivo, a protocol of evaluation has been developed using magnetic resonance imaging (MRI). Additional MRI-based confirmation of MD was performed.

Research

JoVE Journal - Biology
Free Sample

Generating a "Humanized" Drosophila S2 Cell Line Sensitive to Pharmacological Inhibition of Kinesin-5

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Cited by 2 •

2016

This protocol describes how to generate a Drosophila S2 cell line that is sensitive to small molecule inhibitors of kinesin-5. The use of these cells in a cell-based error correction assay is also outlined.

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