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相关概念视频

Hearing01:31

Hearing

59.0K
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.
59.0K
The Cochlea01:13

The Cochlea

52.7K
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.
52.7K
What is Evolutionary History?02:35

What is Evolutionary History?

45.1K
Scientists record evolutionary history by analyzing fossil, morphological, and genetic data. The fossil record documents the history of life on Earth and provides evidence for evolution. However, both fossil and living organisms offer evidence that outlines Earth’s evolutionary history.
45.1K
Convergent Evolution01:54

Convergent Evolution

34.7K
Evolution shapes the features of organisms over time, ensuring that they are suited for the environments in which they live. Sometimes, selection pressure leads to the rise of similar but unrelated adaptations in organisms with no recent common ancestors, a process known as convergent evolution.
34.7K
Anatomy of the Ear01:16

Anatomy of the Ear

14.0K
Auditory sensation, commonly called hearing, involves the transformation of sonic waves into neural impulses facilitated by the structures of the auditory organ. The prominent, flesh-like structure on the side of the head, called the auricle, directs sound waves towards the auditory canal. The auricle is often mislabeled as the pinna, a term more aligned with mobile structures like a feline's external ear. The auditory canal penetrates the cranium via the external auditory meatus of the...
14.0K
Auditory Pathway01:15

Auditory Pathway

9.1K
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...
9.1K

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相关实验视频

Updated: Apr 13, 2026

Dissection of the Auditory Bulla in Postnatal Mice: Isolation of the Middle Ear Bones and Histological Analysis
07:40

Dissection of the Auditory Bulla in Postnatal Mice: Isolation of the Middle Ear Bones and Histological Analysis

Published on: January 4, 2017

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鱼的听觉是以欧纪的演变.

Sirpa Nummela1, J G M Thewissen, Sunil Bajpai

  • 1Department of Anatomy, Northeastern Ohio Universities College of Medicine, Rootstown, Ohio 44272, USA.

Nature
|August 13, 2004
PubMed
概括

早期的鱼进化显示了听力机制的显著变化. 化石证据显示,早期的鱼从简单的听觉转变为更专业的水生听觉系统.

科学领域:

  • 古生物学的古生物学
  • 进化生物学 进化生物学
  • 比较解剖学的比较解剖学

背景情况:

  • 早期鱼 (鱼) 过渡到海洋环境涉及各器官系统的重大适应.
  • 了解这些适应的进化轨迹,可以深入了解宏观进化过程.

研究的目的:

  • 记录早期鱼外耳和中耳的声音传输机制的进化变化.
  • 分析鱼在从陆地生活方式过渡到海洋生活方式过渡期间的听觉适应.

主要方法:

  • 对早期鱼物种的化石记录进行分析,包括pakicetids,remingtonocetids和protocetids.
  • 对与声音传输相关的外耳和中耳结构进行比较检查.

主要成果:

  • 早期的鱼听觉系统迅速进化,在1500万年内发生了重大变化.
  • 帕基塞蒂类动物表现出一个中间阶段,在空气和水中听力基本.
  • 雷明顿虫和原虫的声音传输机制类似于现代牙鱼,但保留了一些陆地听觉特征.

结论:

  • 早期鱼的听觉演变显示了不同器官系统的不同轨迹.
  • 听觉适应反映了向专门的海洋声音接收的复杂过渡.

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