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相关概念视频

Cerebral Hemispheres01:05

Cerebral Hemispheres

385
The human brain, a complex organ, is functionally divided into two cerebral hemispheres—left and right. These hemispheres are interconnected by a structure of paramount importance, the corpus callosum. This substantial bundle of neural fibers is not just a bridge between the hemispheres but a crucial element for the brain's comprehensive functioning. It enables efficient communication between the two hemispheres, allowing each side of the brain to control and receive sensory and motor...
385
Lateralization01:28

Lateralization

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Brain lateralization refers to the division of mental processes and functions between the two hemispheres of the brain, a phenomenon that optimizes neural efficiency and underpins complex abilities in humans. This specialization allows each hemisphere to perform tasks where it has a comparative advantage, facilitating more refined cognitive capabilities across different domains.
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Major Somatic Sensory Pathways01:28

Major Somatic Sensory Pathways

1.0K
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...
1.0K
Diencephalon: Thalamus and Information Relay01:27

Diencephalon: Thalamus and Information Relay

1.7K
The thalamus, often called “the gateway to the cerebral cortex,” is vital in processing and directing sensory and motor signals throughout the brain. Almost all inputs destined for the cerebral cortex, except for olfactory signals, are relayed through the thalamus. The thalamus is  a sophisticated relay station, channeling information from various brain regions to the cerebral cortex, as well as a filter, prioritizing certain signals over others based on current physiological...
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Association Areas of the Cortex01:21

Association Areas of the Cortex

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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,...
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Lobes of the Cerebrum01:22

Lobes of the Cerebrum

724
The cerebral cortex, a critical structure of the brain, is intricately divided into two hemispheres, each consisting of four distinct lobes: occipital, temporal, frontal, and parietal. These lobes function cooperatively to regulate various cognitive and sensory functions, forming the basis of our complex neural capabilities.
Frontal lobe
The frontal lobes, located behind the forehead, are the command center of our brain, controlling personality, intelligence, and voluntary muscle movements....
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相关实验视频

Updated: Jul 18, 2025

Central and Divided Visual Field Presentation of Emotional Images to Measure Hemispheric Differences in Motivated Attention
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Central and Divided Visual Field Presentation of Emotional Images to Measure Hemispheric Differences in Motivated Attention

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一个正面的跨的抑制循环在视觉空间处理中调解半球间的平衡.

Yanjie Wang1,2, Zhaonan Chen1,2, Guofen Ma1,2

  • 1Songjiang Research Institute, Shanghai Songjiang District Central Hospital, Shanghai Jiao Tong University, School of Medicine, Shanghai, 200025, China.

Nature communications
|August 25, 2023
PubMed
概括

前带带膜区域 (ACA) 的损伤通过破坏跨膜抑制导致视空间偏差. 通过特定的神经元激活来恢复这种抑制循环,可以扭转偏差并改善检测.

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Evaluation of Hemisphere Lateralization with Bilateral Local Field Potential Recording in Secondary Motor Cortex of Mice
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Disruption of Frontal Lobe Neural Synchrony During Cognitive Control by Alcohol Intoxication
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Disruption of Frontal Lobe Neural Synchrony During Cognitive Control by Alcohol Intoxication

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相关实验视频

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Central and Divided Visual Field Presentation of Emotional Images to Measure Hemispheric Differences in Motivated Attention
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Evaluation of Hemisphere Lateralization with Bilateral Local Field Potential Recording in Secondary Motor Cortex of Mice
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Disruption of Frontal Lobe Neural Synchrony During Cognitive Control by Alcohol Intoxication
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科学领域:

  • 神经科学是一个神经科学.
  • 认知神经科学 认知神经科学
  • 系统神经科学 系统神经科学

背景情况:

  • 通过体进行半球间通信对于感官和认知功能至关重要.
  • 障碍的跨腔抑制与前面对面损伤后的视觉空间偏差有关,但潜在的突触电路尚不清楚.

研究的目的:

  • 为了研究前带带膜区域 (ACA) 病变后调解跨膜抑制和视觉空间偏差的突触回路.
  • 探索 ACA 呼体投射神经元 (CPN) 和双蛋白阳性 (PV+) 神经元在半球间平衡中的作用.

主要方法:

  • 在小鼠中使用视觉变化检测任务,这些小鼠有前带皮带区域 (ACA) 病变.
  • 执行单边的CPN无活化和帕瓦胺阳性 (PV+) 神经元激活/无活化.
  • 分析行为变化和半球间相互作用.

主要成果:

  • ACA病变诱导的视觉空间偏差是由一个跨的抑制循环介导的.
  • CPNs和对侧PV+神经元形成一个抑制循环,调节半球间通信.
  • 激活受损PV+神经元恢复了半球间平衡,并逆转了损伤引起的视觉空间偏差.

结论:

  • 一个涉及ACA CPNs和PV+神经元的正面横阻断循环对于视觉空间处理和半球间平衡至关重要.
  • 增强这种抑制途径可以恢复平衡,并纠正由脑损伤引起的视觉空间缺陷.