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相关概念视频

Lateralization01:28

Lateralization

319
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.
319
Role of Cerebellum and Prefrontal Cortex in Memory01:14

Role of Cerebellum and Prefrontal Cortex in Memory

413
The cerebellum, while traditionally associated with motor control, also plays a crucial role in memory, particularly in procedural memory, which involves learning motor tasks that become automatic through repetition. For example, studies have shown that when the cerebellum is damaged, individuals or animals lose the ability to learn conditioned motor responses, such as the conditioned eye-blink response in classical conditioning experiments with rabbits. This study demonstrates the...
413
Role of Hippocampus in Memory01:19

Role of Hippocampus in Memory

215
The hippocampus, a critical brain structure, plays an essential role in memory processing, particularly in the formation and retrieval of memory. This small, seahorse-shaped region is located within the medial temporal lobe, with one hippocampus in each brain hemisphere. Experimental studies involving lesions in the hippocampi of rats have demonstrated significant impairments in tasks such as object recognition and maze navigation, indicating the hippocampus involvement in both recognition and...
215
Somatosensory, Motor, and Association Cortex01:24

Somatosensory, Motor, and Association Cortex

468
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...
468
Association Areas of the Cortex01:21

Association Areas of the Cortex

5.2K
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,...
5.2K
Diencephalon: Thalamus and Information Relay01:27

Diencephalon: Thalamus and Information Relay

1.5K
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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相关实验视频

Updated: Jun 22, 2025

Virtual Reality Tools for Assessing Unilateral Spatial Neglect: A Novel Opportunity for Data Collection
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Virtual Reality Tools for Assessing Unilateral Spatial Neglect: A Novel Opportunity for Data Collection

Published on: March 10, 2021

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在延迟的空间交替中,后皮层的皮层作用.

Dev Laxman Subramanian1, Adam M P Miller1, David M Smith1

  • 1Department of Psychology, Cornell University, Ithaca, NY 14853.

bioRxiv : the preprint server for biology
|July 1, 2024
PubMed
概括

后皮质 (RSC) 对于空间记忆至关重要. 延迟期间的RSC神经元活动编码空间信息,对任务执行至关重要,特别是在延迟时间较长的情况下.

科学领域:

  • 神经科学是一个神经科学.
  • 认知科学 认知科学
  • 行为神经科学 行为神经科学

背景情况:

  • 后皮质 (RSC) 已被公认为其在空间认知中的作用.
  • 以前的研究表明,RSC对于空间工作记忆任务至关重要.
  • 记忆延迟期间RSC神经编码的精确机制尚不清楚.

研究的目的:

  • 为了研究后皮质 (RSC) 神经元如何在延迟期间编码空间记忆.
  • 为了检查RSC病变对不同延迟时间的空间交替性能的影响.

主要方法:

  • 在老鼠中诱导了RSC的兴奋毒性病变.
  • 老鼠执行了一个空间交替任务,延迟长度各不相同.
  • 在RSC中的神经元活动在任务执行期间被记录下来.

主要成果:

  • RSC病变显著损害了空间交替,特别是在延迟时间较长的情况下.
  • 在延迟期间,RSC神经元在左与右试验之前显示出明显的触发模式.
  • 这些差异性发射模式没有先前的错误.
  • 许多RSC神经元表现出试验启动的激发突发,使方向选择有所差异.
关键词:
延迟时间 发射模式延迟的空间交替.脑后大脑皮层 (retrosplenial cortex) 的一个部分.空间工作记忆 空间工作记忆

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Evaluation of Hemisphere Lateralization with Bilateral Local Field Potential Recording in Secondary Motor Cortex of Mice
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Evaluation of Hemisphere Lateralization with Bilateral Local Field Potential Recording in Secondary Motor Cortex of Mice

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相关实验视频

Last Updated: Jun 22, 2025

Virtual Reality Tools for Assessing Unilateral Spatial Neglect: A Novel Opportunity for Data Collection
07:04

Virtual Reality Tools for Assessing Unilateral Spatial Neglect: A Novel Opportunity for Data Collection

Published on: March 10, 2021

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Reversible Cooling-induced Deactivations to Study Cortical Contributions to Obstacle Memory in the Walking Cat
09:43

Reversible Cooling-induced Deactivations to Study Cortical Contributions to Obstacle Memory in the Walking Cat

Published on: December 11, 2017

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Evaluation of Hemisphere Lateralization with Bilateral Local Field Potential Recording in Secondary Motor Cortex of Mice
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Evaluation of Hemisphere Lateralization with Bilateral Local Field Potential Recording in Secondary Motor Cortex of Mice

Published on: July 31, 2019

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结论:

  • 在延迟期间的RSC神经元发射模式编码关键的空间工作记忆信息.
  • 这些模式对于成功的空间交替表现至关重要.
  • RSC活动也可能为空间导航提供主要的行为反应.