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相关概念视频

Anatomy of the Eyeball01:20

Anatomy of the Eyeball

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The eye is a spherical, hollow structure composed of three tissue layers. The outer layer — the fibrous tunic, comprises the sclera — a white structure — and the cornea, which is transparent. The sclera encompasses some of the ocular surface, most of which is not visible. However, the 'white of the eye' is distinctively visible in humans compared to other species. The cornea, a clear covering at the front of the eye, enables light penetration. The eye's middle...
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Vision01:24

Vision

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Vision is the result of light being detected and transduced into neural signals by the retina of the eye. This information is then further analyzed and interpreted by the brain. First, light enters the front of the eye and is focused by the cornea and lens onto the retina—a thin sheet of neural tissue lining the back of the eye. Because of refraction through the convex lens of the eye, images are projected onto the retina upside-down and reversed.
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The Retina01:32

The Retina

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The retina is a layer of nervous tissue at the back of the eye that transduces light into neural signals. This process, called phototransduction, is carried out by rod and cone photoreceptor cells in the back of the retina.
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Depth Perception and Spatial Vision01:15

Depth Perception and Spatial Vision

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Depth perception is the ability to perceive objects three-dimensionally. It relies on two types of cues: binocular and monocular. Binocular cues depend on the combination of images from both eyes and how the eyes work together. Since the eyes are in slightly different positions, each eye captures a slightly different image. This disparity between images, known as binocular disparity, helps the brain interpret depth. When the brain compares these images, it determines the distance to an object.
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Focusing of Light in the Eye01:16

Focusing of Light in the Eye

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Light rays enter the eye through the cornea, a transparent dome-shaped tissue that is the eye's outermost layer. The cornea bends or refracts, light rays traveling to the pupil. The shape of the cornea determines how much of the light is bent and whether the image will be focused correctly on the retina at the back of the eye. Once the light has passed through both refraction layers, it converges into a single focal point onto a small area. This is where photoreceptors start transforming...
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Visual System01:26

Visual System

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Light enters the eye through the cornea, a transparent, dome-shaped surface covering the surface of the eyeball that helps to direct and focus incoming light. This light is then channeled toward the pupil, an adjustable opening whose size is controlled by the iris. The iris, a pigmented muscle, regulates the amount of light entering the eye by contracting or dilating the pupil, thereby ensuring optimal light levels for clear vision.
Once through the pupil, the light passes through the lens, a...
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相关实验视频

Updated: Sep 15, 2025

Where You Cut Matters: A Dissection and Analysis Guide for the Spatial Orientation of the Mouse Retina from Ocular Landmarks
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Where You Cut Matters: A Dissection and Analysis Guide for the Spatial Orientation of the Mouse Retina from Ocular Landmarks

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视网膜的最佳位置在空间和时间的高分辨率视觉.

Josselin Gautier1,2, Norick R Bowers1, Martin S Banks1

  • 1Herbert Wertheim School of Optometry and Vision Science, University of California, Berkeley, USA.

bioRxiv : the preprint server for biology
|July 14, 2025
PubMed
概括

人类在苛刻的任务中无意识地控制眼动,以获得最佳视力. 眼运动系统将目光引导到首选的视网膜位置 (PRL),以获得最清晰的视力敏度,即便视力偏离焦点.

科学领域:

  • 眼神运动控制器的控制器
  • 人类视觉 人类视觉
  • 神经科学是一个神经科学.

背景情况:

  • 在视觉任务中,人类表现出精确的,机器般的眼睛运动.
  • 视觉刺激接近时,一种类型的眼动 - - 微观眼动 (microsaccades) 减少.
  • 固定涉及漂移和微,将刺激指向特定的视网膜区域.

研究的目的:

  • 在具有挑战性的视觉分辨任务中调查人类眼睛运动的特征.
  • 为了确定眼动,刺激预测和视觉敏度之间的关系.
  • 了解偏好的视网膜位置 (PRL) 的功能意义.

主要方法:

  • 在人类执行视觉任务时,分析眼动行为 (microsaccades,漂移).
  • 测量视力敏度在视网膜的不同位置,包括眼和PRL.
  • 刺激呈现前最后一个微秒的时间与视觉敏度的相关性.

主要成果:

  • 固定期间的眼睛运动受到高度控制,将刺激限制在一个小的视网膜区域 (PRL).
  • 尽管PRL与膜偏离,但它提供了最好的视觉敏度.
  • 在刺激开始前至少400毫米时,最终的微秒发生时,就能达到最佳的视力敏度.

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Ultrahigh Resolution Mouse Optical Coherence Tomography to Aid Intraocular Injection in Retinal Gene Therapy Research

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En face Cryosectioning of Mouse Retina for High-dimensional Spatial Molecular Analysis
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En face Cryosectioning of Mouse Retina for High-dimensional Spatial Molecular Analysis

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Last Updated: Sep 15, 2025

Where You Cut Matters: A Dissection and Analysis Guide for the Spatial Orientation of the Mouse Retina from Ocular Landmarks
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Ultrahigh Resolution Mouse Optical Coherence Tomography to Aid Intraocular Injection in Retinal Gene Therapy Research
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Ultrahigh Resolution Mouse Optical Coherence Tomography to Aid Intraocular Injection in Retinal Gene Therapy Research

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En face Cryosectioning of Mouse Retina for High-dimensional Spatial Molecular Analysis
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En face Cryosectioning of Mouse Retina for High-dimensional Spatial Molecular Analysis

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  • 这些非自发的眼动并没有被意识地感知到.
  • 结论:

    • 人类的眼运动系统是高度进化的,在固定过程中保持高视觉分辨率.
    • 凝视是精确控制,以保持视觉目标在高敏度PRL,最大限度地减少分辨率下降.
    • 预期视觉刺激会影响眼动行为,以最大限度地提高视觉表现.