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関連する概念動画

Vision01:24

Vision

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.
Angle Closure Glaucoma: Treatment01:28

Angle Closure Glaucoma: Treatment

Angle-closure glaucoma, or closed-angle glaucoma, is an eye condition where the iris bulges out and blocks the iridocorneal angle, resulting in a buildup of aqueous humor and increased intraocular pressure. Immediate medical attention is necessary due to the sudden onset of symptoms. The treatment for angle-closure glaucoma includes short-term and long-term approaches. Short-term treatment involves using eye drops like pilocarpine to lower intraocular pressure by increasing aqueous humor...
Focusing of Light in the Eye01:16

Focusing of Light in the Eye

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...
Depth Perception and Spatial Vision01:15

Depth Perception and Spatial Vision

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.
Visual System01:26

Visual System

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...
Color Vision01:24

Color Vision

Color perception begins in the retina, the light-sensitive layer at the back of the eye. Two main theories explain how colors are seen: the trichromatic theory and the opponent-process theory. The trichromatic theory, proposed by Thomas Young in 1802 and extended by Hermann von Helmholtz in 1852, suggests that color vision is based on three types of cone receptors in the retina. These cones are sensitive to different but overlapping ranges of wavelengths corresponding to red, blue, and green.

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関連する実験動画

Updated: Jun 24, 2026

Assessing Binocular Central Visual Field and Binocular Eye Movements in a Dichoptic Viewing Condition
07:45

Assessing Binocular Central Visual Field and Binocular Eye Movements in a Dichoptic Viewing Condition

Published on: July 21, 2020

ビジョン ビジョン 白内障の除去後にコンの調整.

H S Smallman1, D I MacLeod, P Doyle

  • 1Department of Psychology, University of California at San Diego, La Jolla, California 92093, USA. smallman@pacific-science.com

Nature
|August 9, 2001
PubMed
まとめ

視力に関わる細胞である網膜の光受容体は,白内障の除去後,すぐに明るい光に向かって移動します. これは,コン細胞がフォトトロピックであり,光源を積極的に探している可能性があることを示唆しています.

科学分野:

  • オフタルモロジック (眼科)
  • 細胞生物学 細胞生物学
  • 神経科学は神経科学である.

背景:

  • 生まれながらの白内障は,光を遮断することで視力障害を引き起こす.
  • 光が網膜細胞に与える影響を理解することは,視力の回復に不可欠です.
  • 視力の回復後の光受容体行動は,十分に文書化されていない.

研究 の 目的:

  • 白内障除去後の網膜光受容体のダイナミックな行動を調査する.
  • 成人ヒトにおける状細胞の潜在的光誘発性性を探求する.

主な方法:

  • 双方向の先天性白内障除去手術を受けている成人の患者の観察.
  • 瞳孔内の光刺激に対する網膜の光受容体調整の分析.

主要な成果:

  • 瞳孔の最も明るい領域に向かって,光受容体の迅速な再調整の証拠.
  • 観測により,コーンが活発に光源に向かって向き合う可能性があることが示唆されています.

結論:

  • 網膜の光受容体は,視力が回復した後,光に対する反応として,急速な方向的動きを示します.
  • 発見は,コーン型光受容体がフォトトロピズムを示すという仮説を裏付けている.

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A Gaze-Contingent Display Framework for Perceptual Learning Research with Simulated Central Vision Loss

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関連する実験動画

Last Updated: Jun 24, 2026

Assessing Binocular Central Visual Field and Binocular Eye Movements in a Dichoptic Viewing Condition
07:45

Assessing Binocular Central Visual Field and Binocular Eye Movements in a Dichoptic Viewing Condition

Published on: July 21, 2020

Binocular Dynamic Visual Acuity in Eyeglass-Corrected Myopic Patients
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Binocular Dynamic Visual Acuity in Eyeglass-Corrected Myopic Patients

Published on: March 29, 2022

A Gaze-Contingent Display Framework for Perceptual Learning Research with Simulated Central Vision Loss
07:12

A Gaze-Contingent Display Framework for Perceptual Learning Research with Simulated Central Vision Loss

Published on: April 11, 2025