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相关概念视频

Major Somatic Sensory Pathways01:28

Major Somatic Sensory Pathways

2.4K
Sensory impulses related to touch, pressure, vibration, and proprioception from various body parts, such as the limbs, trunk, neck, and posterior head, travel to the cerebral cortex through the posterior column-medial lemniscus pathway. The pathway’s name derives from the two white-matter tracts that convey the impulses: the spinal cord's posterior column and the brainstem's medial lemniscus. First-order sensory neurons extend their axons into the spinal cord, forming the...
2.4K
Somatosensation01:33

Somatosensation

43.0K
The somatosensory system relays sensory information from the skin, mucous membranes, limbs, and joints. Somatosensation is more familiarly known as the sense of touch. A typical somatosensory pathway includes three types of long neurons: primary, secondary, and tertiary. Primary neurons have cell bodies located near the spinal cord in groups of neurons called dorsal root ganglia. The sensory neurons of ganglia innervate designated areas of skin called dermatomes.
43.0K
Introduction to Special Senses01:26

Introduction to Special Senses

7.3K
Sensory receptors play an integral part in comprehending our external and internal environments. They receive diverse stimuli, converting them into the nervous system's electrochemical signals. This conversion occurs as the stimulus alters the sensory neuron's cell membrane potential, instigating the generation of an action potential. This action potential is subsequently transmitted to the central nervous system (CNS), which integrates with other sensory data or higher cognitive...
7.3K
The Vestibular System01:29

The Vestibular System

43.4K
The vestibular system is a set of inner ear structures that provide a sense of balance and spatial orientation. This system is comprised of structures within the labyrinth of the inner ear, including the cochlea and two otolith organs—the utricle and saccule. The labyrinth also contains three semicircular canals—superior, posterior, and horizontal—that are oriented on different planes.
43.4K
Depth Perception and Spatial Vision01:15

Depth Perception and Spatial Vision

1.8K
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.
1.8K
Sensory Perception: Organization of the Somatosensory System01:11

Sensory Perception: Organization of the Somatosensory System

11.0K
The somatosensory system is the central and peripheral nervous system component that senses and processes touch, pressure, pain, temperature, and body position or proprioception. The process of sensation takes place at three levels:
The receptor level:
The receptor level is the first stage of sensation. It involves the detection of a stimulus by specialized sensory receptors. The stimulus must arrive within the receptor's receptive field. Next, the receptor converts the energy of the...
11.0K

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相关实验视频

Updated: Jan 17, 2026

MPI CyberMotion Simulator: Implementation of a Novel Motion Simulator to Investigate Multisensory Path Integration in Three Dimensions
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MPI CyberMotion Simulator: Implementation of a Novel Motion Simulator to Investigate Multisensory Path Integration in Three Dimensions

Published on: May 10, 2012

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自动运动的多感应编码及其对导航的贡献

Dun Mao1,2, Yong Gu3,4

  • 1Center for Excellence in Brain Science and Intelligence Technology, Key Laboratory of Brain Cognition and Brain-inspired Intelligence Technology, Institute of Neuroscience, International Center for Primate Brain Research, Chinese Academy of Sciences, Shanghai, China.

Nature reviews. Neuroscience
|September 15, 2025
PubMed
概括

移动生物使用多感官集成来感知自我运动和导航. 这涉及到将前庭和视觉输入等信号结合起来,以获得准确的方向和速度估计,这对于路径集成至关重要.

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Controlled Rotation of Human Observers in a Virtual Reality Environment
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Controlled Rotation of Human Observers in a Virtual Reality Environment

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Author Spotlight: Investigating the Effects of Mind-Body-Movement Practices on Brain Function
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Author Spotlight: Investigating the Effects of Mind-Body-Movement Practices on Brain Function

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相关实验视频

Last Updated: Jan 17, 2026

MPI CyberMotion Simulator: Implementation of a Novel Motion Simulator to Investigate Multisensory Path Integration in Three Dimensions
09:46

MPI CyberMotion Simulator: Implementation of a Novel Motion Simulator to Investigate Multisensory Path Integration in Three Dimensions

Published on: May 10, 2012

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Controlled Rotation of Human Observers in a Virtual Reality Environment
09:11

Controlled Rotation of Human Observers in a Virtual Reality Environment

Published on: April 21, 2022

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Author Spotlight: Investigating the Effects of Mind-Body-Movement Practices on Brain Function
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Author Spotlight: Investigating the Effects of Mind-Body-Movement Practices on Brain Function

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科学领域:

  • 神经科学是一个神经科学.
  • 感官处理 感官处理
  • 导航 导航 导航 导航 导航

背景情况:

  • 移动生物依赖于整合各种自我运动线索进行导航.
  • 准确的方向和速度感知对于基于路径集成的导航至关重要.
  • 了解多感官集成的神经机制是理解空间认知的关键.

研究的目的:

  • 阐明用于自我运动感知的多感官集成的基础交叉模式算法.
  • 研究大脑如何处理前庭,视觉和自身感知信息以导航.
  • 探索预测编码和错误纠正在空间地图构造中的作用.

主要方法:

  • 动物模型中的神经生理记录.
  • 对前庭视觉收的分析.
  • 预测编码和基准引用错误校正的调查.
  • 检查自我中心到非中心的空间转换.

主要成果:

  • 在自动运动处理中确定了无处不在的交叉模式算法.
  • 证明前庭视觉收增强了自我运动感知.
  • 展示了用于最佳动态状态估计的预测编码.
  • 突出地标引用的错误纠正以减轻路径集成漂移.
  • 透露了通过自身感知集成的自我中心到非中心的转换.

结论:

  • 多感官编码对于准确的自我运动感知和自我定位至关重要.
  • 大脑使用复杂的算法来整合各种传感输入以导航.
  • 这些发现推动了我们对空间导航和认知映射中的神经机制的理解.