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Perceiving Loudness, Pitch, and Location01:21

Perceiving Loudness, Pitch, and Location

192
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...
192
Auditory Perception01:17

Auditory Perception

317
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...
317
Auditory Pathway01:15

Auditory Pathway

4.7K
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...
4.7K
Hearing01:31

Hearing

51.8K
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.
51.8K
Air-entraining Agents01:27

Air-entraining Agents

76
Air-entraining agents improve the durability and workability of concrete in climates with frequent freezing and thawing. These agents prevent cracks by introducing small air bubbles into the mix, creating spaces accommodating water expansion when temperatures drop. The air-entraining agents lower the surface tension of water, forming stable, small air bubbles. This method is more effective than having accidental large voids, as the intentional, smaller, and evenly distributed air voids improve...
76
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

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相关实验视频

Updated: Jun 6, 2025

Foreign Accent and Forensic Speaker Identification in Voice Lineups: The Influence of Acoustic Features Based on Prosody
09:09

Foreign Accent and Forensic Speaker Identification in Voice Lineups: The Influence of Acoustic Features Based on Prosody

Published on: September 27, 2024

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一个无声的,高保真的,多方向的语音体.

Margaret K Miller1, Vahid Delaram2, Allison Trine2

  • 1Center for Hearing Research, Boys Town National Research Hospital, Omaha, NE.

Journal of speech, language, and hearing research : JSLHR
|December 2, 2024
PubMed
概括

使用无回声录音创建了一个新的多方向,高保真语音语料库. 该资源使高级语音感知研究成为可能,包括语音定向和扩展高频的影响.

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Author Spotlight: Investigating the Impact of Emotional Prosodies on Voice Recognition and Perception
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Systematic Hearing Performance Evaluation Process for Adolescents with Cochlear Implantation at Early Ages
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相关实验视频

Last Updated: Jun 6, 2025

Foreign Accent and Forensic Speaker Identification in Voice Lineups: The Influence of Acoustic Features Based on Prosody
09:09

Foreign Accent and Forensic Speaker Identification in Voice Lineups: The Influence of Acoustic Features Based on Prosody

Published on: September 27, 2024

402
Author Spotlight: Investigating the Impact of Emotional Prosodies on Voice Recognition and Perception
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Author Spotlight: Investigating the Impact of Emotional Prosodies on Voice Recognition and Perception

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Systematic Hearing Performance Evaluation Process for Adolescents with Cochlear Implantation at Early Ages
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科学领域:

  • 听力学 听力学是指听力学.
  • 语音科学 语言科学
  • 声学 声学 在声学方面

背景情况:

  • 当前的语音测试材料并不完全代表现实世界的听觉条件.
  • 缺乏捕捉语音定向和扩展高频 (EHF) 内容的材料限制了对语音感知的理解.

研究的目的:

  • 开发一个多方向的,高保真性语音库.
  • 为研究复杂的声学环境中的语音感知创造资源.
  • 为了研究语音指导性和EHF内容的影响.

主要方法:

  • 使用了30名讲者 (15名男性,15名女性) 的多通道无声录音.
  • 记录的Bamford-Kowal-Bench (BKB) 标准句子测试列表,数字0-10,以及未编写的叙述.
  • 采用了17个自由场麦克风,采样频率为48kHz.

主要成果:

  • 创建了一个全面的语音库,包括多个BKB列表,数字和叙述.
  • 该集体包括30名演讲者的多元化组的录音.
  • 录音的公开可用性促进了更广泛的研究访问.

结论:

  • 开发的语料库支持更加多样化和精确的语音识别测试.
  • 能够调查语音指向性和EHF内容对感知的影响.
  • 为学习复杂的听觉场景中的语音提供了宝贵的资源.