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相关概念视频

Organization of the Brain01:30

Organization of the Brain

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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...
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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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Biological Influences on Intelligence01:30

Biological Influences on Intelligence

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Intelligence is often thought to be linked to brain size, but the relationship is more complex than that. While brain size does correlate modestly with some abilities, like verbal skills, the connection is weaker for others, such as spatial reasoning. Other factors, like brain structure, also play crucial roles. For instance, despite Einstein's smaller-than-average brain, his parietal cortex, which is involved in spatial reasoning, was 15% wider, suggesting that neural density might matter...
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Cerebrum: Anatomical Overview I01:26

Cerebrum: Anatomical Overview I

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The main and largest component of the human brain is the cerebrum. The cerebrum consists of two main parts: the cerebral cortex, an outer layer with wrinkles or folds known as gyri and shallow grooves called sulci, and a deeper region beneath it. The cerebrum divides into two distinct hemispheres and contains five different lobes: the frontal, parietal, temporal, occipital, and insula. The central sulcus separates the frontal and parietal lobes and two functionally important gyri — the...
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Synteny and Evolution02:31

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John H. Renwick first coined the term “synteny” in 1971, which refers to the genes present on the same chromosomes, even if they are not genetically linked. The species with common ancestry tend to show conserved syntenic regions. Therefore, the concept of synteny is nowadays used to describe the evolutionary relationship between species.
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Genome comparison is one of the excellent ways to interpret the evolutionary relationships between organisms. The basic principle of genome comparison is that if two species share a common feature, it is likely encoded by the DNA sequence conserved between both species. The advent of genome sequencing technologies in the late 20th century enabled scientists to understand the concept of conservation of domains between species and helped them to deduce evolutionary relationships across diverse...
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相关实验视频

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推动人类大脑演变的细胞复杂性

Emre Caglayan1,2, Fatma Ayhan1,2, Yuxiang Liu1,2

  • 1Department of Neuroscience, UT Southwestern Medical Center, Dallas, TX, USA.

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|July 19, 2023
PubMed
概括

人类大脑的进化涉及到独特的基因组变化. 这项研究揭示了人类和灵长类动物之间的细胞类型特定的分子和调节差异,揭示了人类大脑创新的机制.

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科学领域:

  • 进化生物学
  • 神经科学
  • 基因组学

背景情况:

  • 人类特异性基因组改变是人类独特大脑功能的基础.
  • 细胞多样性和复杂的基因调控需要对人类特有的分子特征进行细胞分辨率分析.

研究的目的:

  • 在细胞分辨率下描述人类特有的分子和调节特征.
  • 确定对人类大脑进化的基因组区域和调节机制.

主要方法:

  • 分析单核RNA测序 (snRNA-seq) 和对转化酶可访问的染色体的单核测定与测序 (snATAC-seq) 数据
  • 对人类,黑猩猩和 rhesus macaques (后带皮层) 的脑组织进行比较分析.

主要成果:

  • 观察到人体特异性转移的寡细胞群 (增加的前代细胞,减少的成熟细胞).
  • 鉴定了包括FOXP2上调在内的原细胞和神经元亚型的加速人体特异性调控变化.
  • 发现了数百个具有改变色素可访问性的人类加速基因组区域 (HAR),在刺激神经元中为FOS::JUN和FOX动机进行了丰富.

结论:

  • 揭示了驱动人类大脑进化的细胞类型特异性的新分子和调节机制.
  • 突出了寡细胞发育和特定转录因子在人类神经创新的作用.