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相关概念视频

Perception of Sound Waves01:01

Perception of Sound Waves

4.4K
The human ear is not equally sensitive to all frequencies in the audible range. It may perceive sound waves with the same pressure but different frequencies as having different loudness. Moreover, the perception of sound waves depends on the health of an individual's ears, which decays with age. The health of one's ears may also be affected by regular exposure to loud noises.
The pitch of a sound depends on the frequency and the pressure amplitude of the source. Two sounds of the same...
4.4K
Hearing01:31

Hearing

52.0K
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.
52.0K
Perceiving Loudness, Pitch, and Location01:21

Perceiving Loudness, Pitch, and Location

205
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...
205
Sound Intensity Level00:53

Sound Intensity Level

4.2K
Humans perceive sound by hearing. The human ear helps sound waves reach the brain, which then interprets the waves and creates the perception of hearing. The loudness of the environment in which a person is located determines whether they can distinguish between different sound sources.
The human ear can perceive an extensive range of sound intensity, necessitating the use of the logarithmic scale to define a physical quantity—the intensity level. It is a ratio of two intensities and...
4.2K
The Auditory Ossicles01:11

The Auditory Ossicles

1.6K
The auditory ossicles of the middle ear transmit sounds from the air as vibrations to the fluid-filled cochlea. The auditory ossicles consist of two malleus (hammer) bones, two incus (anvil) bones, and two stapes (stirrups), one on each side. These bones develop during the fetal stage and are the ones to ossify first. They are fully mature at birth and do not grow afterward.
The aptly named stapes look very much like a stirrup. The three ossicles are unique to mammals, and each plays a role in...
1.6K
Auditory Perception01:17

Auditory Perception

331
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...
331

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听力损失,助听器和功能状态

Sahar Assi1,2, Erica Twardzik2, Anna M Kucharska-Newton3

  • 1Cochlear Center for Hearing and Public Health, Johns Hopkins University, Baltimore, Maryland.

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概括

中度或较大的听力损失与功能困难和老年人日常活动的更快下降有关. 在这项研究中,助听器的使用并没有改变这种关联.

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科学领域:

  • 老年学是一门学科.
  • 听力学 听力学是指听力学.
  • 公共卫生 公共卫生

背景情况:

  • 听力损失是老年人中普遍存在的疾病.
  • 它可能通过认知和社会途径对功能状态产生负面影响.
  • 听力助听器被假设可以减轻这些影响,但人口数据有限.

研究的目的:

  • 调查老年人听力损失和功能状态之间的关联.
  • 检查助听器在改变这种关联中的作用.

主要方法:

  • 对社区动脉样硬化风险队列数据 (2016-2022) 的横截面和纵向分析.
  • 参与者根据听力损失严重程度 (无,轻度,中度或更大) 根据更好听觉的耳朵的纯音调平均值进行分类.
  • 功能状态通过自我报告的日常生活活动,日常生活工具活动和执行较重任务的困难来评估.

主要成果:

  • 中等或较大的听力损失与日常生活活动,日常生活的工具活动和较重的任务的增加困难有关.
  • 从长度来看,中度或较大的听力损失预测了功能能力的更快下降.
  • 在助听器使用者和非使用者之间没有观察到功能状态的显著差异.

结论:

  • 在老年人中,中度至重度的听力损失独立地与功能限制和加速功能衰退有关.
  • 目前的助听器使用似乎没有改变这个群体中听力损失和功能状态之间的关系.
  • 需要进一步的研究来了解听力干预措施的保护作用.