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相关概念视频

Scanning Electron Microscopy01:07

Scanning Electron Microscopy

4.2K
A scanning electron microscope (SEM) is used to study the surface features of a sample by using an electron beam that scans the sample surface in a two-dimensional manner. Typically, areas between ~1 centimeter to 5 micrometers in width can be imaged. SEM can be used to image bacteria, viruses, tissues as well as larger samples like insects. Conventional SEM gives a magnification ranging from 20X to 30,000X and spatial resolution of 50 to 100 nanometers.
Fundamental Principles
Accelerated...
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Overview of Electron Microscopy01:25

Overview of Electron Microscopy

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The wavelengths of visible light ultimately limit the maximum theoretical resolution of images created by light microscopes. Most light microscopes can only magnify 1000X, and a few can magnify up to 1500X. Electrons, like electromagnetic radiation, can behave like waves, but with wavelengths of 0.005 nm, they produce significantly greater resolution up to 0.05 nm as compared to 500 nm for visible light. An electron microscope (EM) can create a sharp image that is magnified up to 2,000,000X.
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Immunogold Electron Microscopy01:20

Immunogold Electron Microscopy

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Immunoelectron microscopy utilizes immunogold labeling of endogenous proteins with specific antibodies to detect and localize these proteins in cells and tissues. The procedure provides insights into the distribution and quantification of protein under different stimulation conditions offering clues about their functions. Conjugating highly electron-dense gold particles with primary or secondary antibodies allow antigen detection on and within cells, with high resolution and specificity.
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Preparation of Samples for Electron Microscopy01:20

Preparation of Samples for Electron Microscopy

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To be visualized by an electron microscope, either transmission or scanning, biological samples need to be fixed (stabilized) so the electron beam does not destroy them and dried thoroughly (desiccated/dehydrated) so the vacuum does not affect them. Fixation needs to be done as quickly as possible because the sample properties will start changing as soon as it is removed from its natural environment. For example, in a tissue sample, the oxygen levels begin decreasing, causing an altered...
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相关实验视频

Updated: Jul 4, 2025

Processing Embryo, Eggshell, and Fungal Culture for Scanning Electron Microscopy
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Processing Embryo, Eggshell, and Fungal Culture for Scanning Electron Microscopy

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基于扫描电子显微镜对蛋质量的评估.

Prem Lal Mahato1, Tina Weatherby2, Kristen Ewell2

  • 1Department of Human Nutrition Food and Animal Sciences, College of Tropical, Agriculture and Human Resources, University of Hawaii at Manoa, Honolulu, HI, USA.

Poultry science
|February 1, 2024
PubMed
概括

这项研究开发了一种使用扫描电子显微镜 (SEM) 和能量分散谱法 (EDS) 的新方法,以精确测量蛋厚度和矿物质含量. 这种技术有助于选择繁殖物种以改善蛋质量.

关键词:
蛋质量的蛋质量.哺乳动物 哺乳动物矿物矿物矿物矿物矿物矿物矿物矿物.立在木架上 立在木架上 立在木架上扫描电子显微镜扫描电子显微镜

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科学领域:

  • 材料科学 材料科学 材料科学
  • 动物科学动物科学
  • 生物化学 生化学

背景情况:

  • 蛋质量对家禽业至关重要,影响经济可行性.
  • 蛋质量差导致经济损失很大.
  • 需要准确的方法来评估卵的质量,以改善繁殖.

研究的目的:

  • 开发一种精确的方法,使用SEM来确定蛋的厚度.
  • 用SEM-能量分散光谱法 (EDS) 分析蛋矿物成分.
  • 建立一个科学基础,为选择优秀的繁殖品种进行增强蛋的选择.

主要方法:

  • 使用扫描电子显微镜 (SEM) 可视化蛋结构.
  • 用于矿物成分分析的SEM-能量分散光谱 (EDS).
  • 分析了四种类型的食用蛋 (来自美国大陆和夏威夷的无有机,无非有机).

主要成果:

  • 确定了三个不同的蛋层:皮质,杆和哺乳动物区域.
  • 来自夏威夷的有机蛋表现出更大的蛋厚度.
  • 观测到矿物分布的变化,其中是最丰富的.

结论:

  • 开发的SEM和EDS方法准确评估蛋的质量和生物化学特性.
  • 这种方法作为一种有价值的工具,用于选择具有优越蛋特征的繁殖群.
  • 通过有针对性的育种计划,可以在未来几代人中提高蛋质量.