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相关概念视频

Spinal Cord: Cross-sectional Anatomy01:16

Spinal Cord: Cross-sectional Anatomy

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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
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Cerebrum: Anatomical Overview II01:11

Cerebrum: Anatomical Overview II

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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...
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Functional Divisions of the Nervous System01:23

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The nervous system, responsible for sensing, integrating, and responding to various stimuli, is divided into the central nervous system (CNS) and the peripheral nervous system (PNS). The PNS has two functional divisions: the sensory or afferent division and the motor or efferent division.
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Anatomy of the Brain: Major Regions01:20

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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...
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Cerebral Hemispheres01:05

Cerebral Hemispheres

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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...
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Phase-Contrast Microscopes
In-phase-contrast microscopes, interference between light directly passing through a cell and light refracted by cellular components is used to create high-contrast, high-resolution images without staining. It is the oldest and simplest type of microscope that creates an image by altering the wavelengths of light rays passing through the specimen. Altered wavelength paths are created using an annular stop in the condenser. The annular stop produces a hollow cone of...
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在灰白物质边界的功能对比度.

Muwei Li1,2, Lyuan Xu3,4, Soyoung Choi3,5

  • 1Vanderbilt University Institute of Imaging Science, Vanderbilt University Medical Center, Nashville, TN, USA. m.li@vumc.org.

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新的功能磁共振成像 (fMRI) 度量揭示了对白质功能的洞察力. 这些测量,专注于灰白物质边界,显示与大脑组织和发育有关的明显模式.

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科学领域:

  • 神经成像是一种神经成像.
  • 白物质神经科学是什么
  • 功能连接分析 功能连接分析

背景情况:

  • 传统的功能性磁共振成像 (fMRI) 主要检查灰质,忽略了白质的功能作用.
  • 有证据表明,功能性血液氧化水平依赖性 (BOLD) 效应发生在白质中,但对灰白质边界的合不明.

研究的目的:

  • 引入和验证用于评估灰白质界面的功能合的新型指标.
  • 探索这些指标与已确定的神经解剖学和发育因素之间的关系.

主要方法:

  • 开发了两个新的指标:灰白物质功能连接 (时间同步) 和灰白血氧化水平依赖 (BOLD) 功率比 (信号振幅差异).
  • 对fMRI数据的分析,以在不同大脑区域和年龄组 (8-21岁) 中描述这些指标.

主要成果:

  • 灰白质的功能连接性与髓化,远程连接和感觉运动组织相关,表明有效的信号传输.
  • 灰白BOLD功率比在高阶加工区域更高,并且随着年龄的增长而增加,这表明白质代谢需求的发育变化.
  • 这些指标揭示了灰白物质边界的不同功能角色.

结论:

  • 新的fMRI指标为白质功能,信号传输和能量代谢提供了互补的见解.
  • 这些发现强调了研究白质和灰白质界面对于全面了解大脑功能和发育的重要性.