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相关概念视频

Parallel Processing01:20

Parallel Processing

242
The brain processes sensory information rapidly due to parallel processing, which involves sending data across multiple neural pathways at the same time. This method allows the brain to manage various sensory qualities, such as shapes, colors, movements, and locations, all concurrently. For instance, when observing a forest landscape, the brain simultaneously processes the movement of leaves, the shapes of trees, the depth between them, and the various shades of green. This enables a quick and...
242
Visual System01:26

Visual System

705
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...
705
Vision01:24

Vision

55.4K
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.
55.4K
Anatomy of the Eyeball01:20

Anatomy of the Eyeball

7.6K
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...
7.6K
Photoreceptors and Visual Pathways01:22

Photoreceptors and Visual Pathways

6.5K
At the molecular level, visual signals trigger transformations in photopigment molecules, resulting in changes in the photoreceptor cell's membrane potential. The photon's energy level is denoted by its wavelength, with each specific wavelength of visible light associated with a distinct color. The spectral range of visible light, classified as electromagnetic radiation, spans from 380 to 720 nm. Electromagnetic radiation wavelengths exceeding 720 nm fall under the infrared category,...
6.5K
Indirect Motor Pathways01:22

Indirect Motor Pathways

1.7K
The indirect motor or extrapyramidal pathways originate in the brainstem, the lower portion of the brain that connects it to the spinal cord. They consist of several distinct tracts, each with specialized functions. The four main tracts of the indirect motor pathways are the vestibulospinal tract, the reticulospinal tract, the tectospinal tract, and the rubrospinal tract.
The vestibulospinal tract originates in the vestibular nuclei of the brainstem. The vestibular system detects changes in...
1.7K

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相关实验视频

Updated: Sep 17, 2025

Using Looming Visual Stimuli to Evaluate Mouse Vision
05:07

Using Looming Visual Stimuli to Evaluate Mouse Vision

Published on: June 13, 2019

11.5K

专用并行通道用于视觉对象追踪的自适应控制.

Matthew F Collie, Chennan Jin, Emily Kellogg

    bioRxiv : the preprint server for biology
    |July 2, 2025
    PubMed
    概括

    虫追踪系统使用两个并行反循环进行自适应控制. 灵活的路径可以在物体移动远离中线,快速运行和唤起时提高方向盘精度.

    科学领域:

    • 神经科学是一个神经科学.
    • 系统神经科学 系统神经科学
    • 动物行为 动物行为

    背景情况:

    • 视觉追踪需要连续的运动命令来保持对象的中心.
    • 适应性控制对于在追逐中灵活获利至关重要,但在机理上仍然不清楚.
    • 草追踪系统提供了一个模型来研究自适应控制的神经机制.

    研究的目的:

    • 阐明Drosophila视觉追踪系统中适应性控制的基础的神经机制.
    • 为了确定精确的视觉跟踪所涉及的特定反循环.
    • 了解如何获得灵活性有助于强大的追求行为.

    主要方法:

    • 在Drosophila中对视觉对象追求的行为分析.
    • 基因操纵以抑制特定的神经通路.
    • 研究平行反回路对方向盘的贡献.

    主要成果:

    • 虫追踪系统使用两个并行反循环进行自适应控制.
    • 一个恒定增益的路径提供了粗的方向向视觉中线.
    • 灵活增益的路径提高了转向精度,适应物体运动,移动速度和兴奋状态.
    • 灵活通路的遗传抑制会损害追求的性能,特别是在兴奋的雄性中.

    更多相关视频

    Investigating Object Representations in the Macaque Dorsal Visual Stream Using Single-unit Recordings
    07:08

    Investigating Object Representations in the Macaque Dorsal Visual Stream Using Single-unit Recordings

    Published on: August 1, 2018

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    A Real-Time Interactive System for Studying Confrontational Pursuit Behavior in Rodents
    06:25

    A Real-Time Interactive System for Studying Confrontational Pursuit Behavior in Rodents

    Published on: May 16, 2025

    573

    相关实验视频

    Last Updated: Sep 17, 2025

    Using Looming Visual Stimuli to Evaluate Mouse Vision
    05:07

    Using Looming Visual Stimuli to Evaluate Mouse Vision

    Published on: June 13, 2019

    11.5K
    Investigating Object Representations in the Macaque Dorsal Visual Stream Using Single-unit Recordings
    07:08

    Investigating Object Representations in the Macaque Dorsal Visual Stream Using Single-unit Recordings

    Published on: August 1, 2018

    8.4K
    A Real-Time Interactive System for Studying Confrontational Pursuit Behavior in Rodents
    06:25

    A Real-Time Interactive System for Studying Confrontational Pursuit Behavior in Rodents

    Published on: May 16, 2025

    573

    结论:

    • 视觉追踪中的自适应控制通过具有独特属性的并行反通道来实现.
    • 灵活的反途径对于精确的错误纠正和在动态条件下强大的追踪至关重要.
    • 这些发现揭示了生物系统如何实现适应性控制,以便在不稳定的情况下进行大力纠错.