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相关概念视频

Anatomy of the Brain: Major Regions01:20

Anatomy of the Brain: Major Regions

11.6K
The brain is the most complex organ in the human body. It consists of four main parts: the cerebrum, diencephalon, cerebellum, and brainstem.
The cerebrum is the largest section of the brain and divides into left and right hemispheres, separated by a deep fissure. The cerebral outer layer of grey matter — the cerebral cortex — comprises elevations called gyri and shallow groves called sulci. The inner portion of white matter includes long nerve fibers known as axons, which connect...
11.6K
Cerebrum: Anatomical Overview II01:11

Cerebrum: Anatomical Overview II

5.0K
Each cerebral hemisphere can be divided into three main regions. The outermost region, the cerebral cortex, is a thin layer (2 to 4 millimeters thick) made up of gray matter, consisting of neuron cell bodies, dendrites, glial cells, and blood vessels. The middle region, or white matter, is primarily composed of myelinated nerve fibers organized into three types of large tracts: association fibers, commissures, and projection fibers. Association fibers connect different areas within the same...
5.0K
Spinal Cord: Cross-sectional Anatomy01:16

Spinal Cord: Cross-sectional Anatomy

5.8K
The cross-sectional anatomy of the spinal cord offers a detailed view of its complex structure and function within the central nervous system. At the core of the spinal cord lies the gray matter, characterized by its butterfly or "H"-shaped appearance in cross-section. This central region is enveloped by white matter, with the overall structure divided into symmetrical halves by the dorsal median sulcus and the ventral median fissure.
Gray Matter and its Components
Central to the gray matter is...
5.8K
Organization of the Brain01:30

Organization of the Brain

4.0K
The brain is an integral component of the nervous system and serves as the center for processing sensory inputs, making decisions, and directing bodily actions. This complex organ is organized into three primary sections: the hindbrain, midbrain, and forebrain, each responsible for a range of vital functions.
Hindbrain
The hindbrain, located at the base of the brain, plays a vital role in regulating automatic processes that sustain life. It includes the medulla oblongata, which is essential for...
4.0K
Brain Imaging01:14

Brain Imaging

1.0K
Brain imaging technologies provide critical insights into both the structure and function of the human brain, enabling medical professionals and researchers to diagnose, study, and treat neurological disorders or psychiatric disorders more effectively.
These technologies include computerized axial tomography (CAT or CT scans), positron-emission tomography (PET scans),  magnetic resonance imaging (MRI),  functional magnetic resonance imaging (fMRI), and Transcranial Magnetic...
1.0K
Parallel Processing01:20

Parallel Processing

961
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...
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相关实验视频

Updated: May 7, 2026

Mapping Cortical Dynamics Using Simultaneous MEG/EEG and Anatomically-constrained Minimum-norm Estimates: an Auditory Attention Example
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Mapping Cortical Dynamics Using Simultaneous MEG/EEG and Anatomically-constrained Minimum-norm Estimates: an Auditory Attention Example

Published on: October 24, 2012

14.7K

跨主体大脑的映射绘制.

G Del Mauro1, Z Wang1

  • 1Department of Diagnostic Radiology and Nuclear Medicine, University of Maryland Schoold of Medicine.

bioRxiv : the preprint server for biology
|April 22, 2024
PubMed
概括

我们开发了一种使用交叉的新方法来绘制个体间的大脑活动相似性的地图. 这种技术揭示了休息状态fMRI数据中的组级模式,推进了大脑连接研究.

科学领域:

  • 神经成像是一种神经成像.
  • 计算神经科学是一种神经科学.
  • 数据分析 数据分析

背景情况:

  • 休息状态功能磁共振成像 (fMRI) 对于理解内在大脑功能至关重要.
  • 量化大脑活动模式中的个体差异仍然是一个挑战.
  • 现有的方法往往缺乏对个体间功能相似性的强有力的测量.

研究的目的:

  • 引入一种新的方法来绘制个人间静止状态fMRI数据的区域相似性.
  • 建立个体间大脑活动模式的定量测量.
  • 用公开可用的神经成像数据集来证明这种方法的应用.

主要方法:

  • 利用交叉作为区域fMRI时间序列之间相似性的度量.
  • 将该方法应用于来自人类结合体项目"青年"的静止状态fMRI数据.
  • 开发了用于脑 (BEN) 绘制的组级可视化技术.

主要成果:

  • 成功地绘制出不同个体大脑活动的区域相似性.
  • 证明了组级大脑 (BEN) 地图的可行性.
  • 确定了功能连接相似性的可重复模式.

更多相关视频

Dynamic Inter-subject Functional Connectivity Reveals Moment-to-Moment Brain Network Configurations Driven by Continuous or Communication Paradigms
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Dynamic Inter-subject Functional Connectivity Reveals Moment-to-Moment Brain Network Configurations Driven by Continuous or Communication Paradigms

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Inter-Brain Synchrony in Open-Ended Collaborative Learning: An fNIRS-Hyperscanning Study
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Inter-Brain Synchrony in Open-Ended Collaborative Learning: An fNIRS-Hyperscanning Study

Published on: July 21, 2021

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相关实验视频

Last Updated: May 7, 2026

Mapping Cortical Dynamics Using Simultaneous MEG/EEG and Anatomically-constrained Minimum-norm Estimates: an Auditory Attention Example
08:45

Mapping Cortical Dynamics Using Simultaneous MEG/EEG and Anatomically-constrained Minimum-norm Estimates: an Auditory Attention Example

Published on: October 24, 2012

14.7K
Dynamic Inter-subject Functional Connectivity Reveals Moment-to-Moment Brain Network Configurations Driven by Continuous or Communication Paradigms
08:36

Dynamic Inter-subject Functional Connectivity Reveals Moment-to-Moment Brain Network Configurations Driven by Continuous or Communication Paradigms

Published on: March 21, 2019

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Inter-Brain Synchrony in Open-Ended Collaborative Learning: An fNIRS-Hyperscanning Study
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Inter-Brain Synchrony in Open-Ended Collaborative Learning: An fNIRS-Hyperscanning Study

Published on: July 21, 2021

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结论:

  • 拟议的基于交叉的方法提供了一种强大的方法来量化休息状态fMRI中个体间的功能相似性.
  • 脑 (BEN) 映射可以揭示有意义的群体级模式.
  • 该方法可扩展到跨会议和跨区域的分析.