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相关概念视频

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.
Motor and Sensory Areas of the Cortex01:14

Motor and Sensory Areas of the Cortex

The cerebral cortex, the brain's outermost layer, is pivotal in processing complex cognitive tasks, emotions, and various sensory inputs and executing voluntary motor activities. This intricate structure is divided into three primary functional areas: the motor areas, sensory areas, and association areas.
Motor Areas
The motor areas located in the frontal lobe are central to controlling voluntary movements. This region is further subdivided into the primary motor cortex and the premotor cortex.
Association Areas of the Cortex01:21

Association Areas of the Cortex

Association areas are regions of the cerebral cortex that do not have a specific sensory or motor function. Instead, they integrate and interpret information from various sources to enable higher cognitive processes such as memory, learning, and decision-making. Some key association areas include the following:
Prefrontal Association Area: This area is located in the frontal lobe and is involved in planning, decision-making, and moderating social behavior. It connects with primary motor areas,...
Accessory Structures of the Eye01:17

Accessory Structures of the Eye

Optical perception, or vision, is an extraordinary sense dependent on converting light signals received via the ocular organs. These organs, known as eyes, are securely positioned within the bony cavities of the skull, called orbits. The orbits serve a dual purpose: a protective shield for the ocular globes and a stable attachment point for the soft ocular tissues. The eye's external protective mechanisms include the eyelids, which are edged with lashes that act as a barrier against foreign...
Anatomy of the Eyeball01:20

Anatomy of the Eyeball

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 layer, the vascular tunic,...
Somatosensory, Motor, and Association Cortex01:23

Somatosensory, Motor, and Association Cortex

The somatosensory cortex in the parietal lobes is crucial for interpreting sensory data such as touch, temperature, and proprioception. The somatosensory cortex, situated in the parietal lobes, plays a vital role in interpreting sensory information like touch, temperature, and proprioception—awareness of body position. This specialized brain region features an organized structure wherein neurons at the top primarily process sensations originating from the lower body. In contrast, those at the...

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相关实验视频

Updated: Jul 14, 2026

VisualEyes: A Modular Software System for Oculomotor Experimentation
10:41

VisualEyes: A Modular Software System for Oculomotor Experimentation

Published on: March 25, 2011

额叶皮层对三维空间中的光滑眼动进行编码.

Kikuro Fukushima1, Takanobu Yamanobe, Yasuhiro Shinmei

  • 1Department of Physiology, Hokkaido University School of Medicine, West 7, North 15, Sapporo 060-8638, Japan. kikuro@med.hokudai.ac.jp

Nature
|September 13, 2002
PubMed
概括

灵长类动物使用明显的眼动来追踪物体. 这项研究揭示了正面眼球场集成这些信号,创建3D眼球运动表示物体跟踪在空间.

科学领域:

  • 神经科学是一个神经科学.
  • 灵长类动物的视力
  • 眼神运动控制器控制器

背景情况:

  • 灵长类动物利用双眼眼动来追踪物体.
  • 额头追逐跟踪前面平面中的物体;接跟踪处理深度变化.
  • 皮层和脑干途径独立处理这些信号.

研究的目的:

  • 为了研究前视野 (FEF) 如何代表眼睛运动信号.
  • 为了确定FEF是否集成了正面追击和接跟踪信号.
  • 了解灵长类动物中3D物体跟踪的神经基础.

主要方法:

  • 灵长类动物的正面眼球领域的电生理学记录.
  • 分析神经元活动在光滑的追逐和眼睛的动作.
  • 对3D目标运动的神经元反应的表征.

主要成果:

  • 在FEF神经元表现出强大的调制在前沿追逐和接跟踪.
  • 这些神经元将眼睛的运动编码为一个三维的笛卡尔坐标系.
  • 一个独特的中间神经表示集成了不同的眼睛运动信号.

结论:

更多相关视频

Video-oculography in Mice
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Video-oculography in Mice

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Using Eye-tracking to Assess the Relative Importance of Visual and Vestibular Input to Subcortical Motion Processing in the Roll Plane
07:24

Using Eye-tracking to Assess the Relative Importance of Visual and Vestibular Input to Subcortical Motion Processing in the Roll Plane

Published on: August 22, 2025

相关实验视频

Last Updated: Jul 14, 2026

VisualEyes: A Modular Software System for Oculomotor Experimentation
10:41

VisualEyes: A Modular Software System for Oculomotor Experimentation

Published on: March 25, 2011

Video-oculography in Mice
09:43

Video-oculography in Mice

Published on: July 19, 2012

Using Eye-tracking to Assess the Relative Importance of Visual and Vestibular Input to Subcortical Motion Processing in the Roll Plane
07:24

Using Eye-tracking to Assess the Relative Importance of Visual and Vestibular Input to Subcortical Motion Processing in the Roll Plane

Published on: August 22, 2025

  • 前视野在整合不同的眼睛运动控制信号方面发挥着至关重要的作用.
  • FEF生成了用于对象跟踪的眼睛运动的统一3D表示.
  • 这种神经机制支持灵长类动物在3D空间中跟踪和操纵物体的能力.