相关实验视频
Updated: Jul 12, 2026

07:14
A Method to Study Adaptation to Left-Right Reversed Audition
Published on: October 29, 2018
概括
短暂暴露于大噪声会激发C57BL/6J小鼠,导致持久的听觉发作易感性和增强的惊反射. 这种效应是特定于耳朵的,表明局部的听觉系统变化.
科学领域:
- 神经科学是一个神经科学.
- 审计系统研究 审计系统研究
- 动物模型 动物模型
背景情况:
- 暴露于大声噪音可能会导致听觉功能的持久变化.
- 听力发作和声学惊反射是听觉系统功能的敏感指标.
- 了解噪音引起的听觉变化的机制至关重要.
研究的目的:
- 为了研究短时间暴露于大噪声对小鼠听觉功能的长期影响.
- 确定噪音引起的发作易感性和惊反射的变化是否是单边的.
- 探索局部化听觉系统变化的潜在作用.
主要方法:
- 在C57BL/6J小鼠的实验中,小鼠被暴露在30秒的响亮噪音刺激中.
- 测量了听力发作易感性和普雷耶声学惊反射值.
- 在同一个耳朵和不同耳朵的原始化和测试之间进行了比较.
主要成果:
- 原始化诱导了对听力发作的长期敏感性.
- 在初始化后观察到声学惊反射值下降15分贝.
- 当初始化和测试涉及对侧耳朵时,这些效应是不存在的.
结论:
- 短暂暴露于大噪声会导致听觉处理的持续变化.
- 观察到的效应很可能是由于特定的耳朵或ipsilateral听觉通路内的变化.
- 这表明噪音诱导过敏的局部机制.
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14:05Behavioral Assessment of Hearing in 2 to 4 Year-old Children: A Two-interval, Observer-based Procedure Using Conditioned Play-based Responses
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相关概念视频
Auditory Pathway
Auditory pathways constitute the complex neural circuits responsible for transmitting and interpreting auditory information from the peripheral auditory system to the brain. Sound waves are initially captured by the outer ear, funneled through the ear canal, and reach the tympanic membrane (eardrum). These vibrations are transmitted via the middle ear's ossicles to the inner ear's cochlea.
When viewed cross-sectionally, the cochlea reveals the scala vestibuli and scala tympani flanking the...
When viewed cross-sectionally, the cochlea reveals the scala vestibuli and scala tympani flanking the...
Hearing
When we hear a sound, our nervous system is detecting sound waves—pressure waves of mechanical energy traveling through a medium. The frequency of the wave is perceived as pitch, while the amplitude is perceived as loudness.
The Cochlea
The cochlea is a coiled structure in the inner ear that contains hair cells—the sensory receptors of the auditory system. Sound waves are transmitted to the cochlea by small bones attached to the eardrum called the ossicles, which vibrate the oval window that leads to the inner ear. This causes fluid in the chambers of the cochlea to move, vibrating the basilar membrane.
Auditory Perception
The auditory system is essential for sound perception, utilizing various critical structures. When sound waves enter the outer ear, they travel through the ear canal and cause the eardrum to vibrate. These vibrations are then transmitted to the middle ear, where three tiny bones – the malleus, incus, and stapes – amplify the sound. This amplification is crucial, as it ensures that the sound vibrations are strong enough to be conveyed to the inner ear. These vibrations then reach the cochlea, a...
Perceiving Loudness, Pitch, and Location
The human brain perceives pitch through two primary mechanisms reflected in place theory and frequency theory. Each mechanism describes how sound waves are interpreted as specific pitches by the brain, offering insights into the intricate processes of auditory perception.
Place theory, or place coding, suggests that different pitches are heard because various sound waves activate specific locations along the cochlea's basilar membrane. The brain determines the pitch of a sound by identifying...
Place theory, or place coding, suggests that different pitches are heard because various sound waves activate specific locations along the cochlea's basilar membrane. The brain determines the pitch of a sound by identifying...