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相关概念视频

X-ray Imaging01:24

X-ray Imaging

5.6K
German physicist Wilhelm Röntgen (1845–1923) was experimenting with electrical current when he discovered that a mysterious and invisible "ray" would pass through his flesh but leave an outline of his bones on a screen coated with a metal compound. In 1895, Röntgen made the first durable record of the internal parts of a living human: an "X-ray" image (as it came to be called) of his wife’s hand. Scientists worldwide quickly began their own experiments with...
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X-ray Diffraction of Biological Samples01:10

X-ray Diffraction of Biological Samples

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X-ray diffraction or XRD is an analytical tool that utilizes X-rays to study ordered structures such as crystalline organic and inorganic samples, polycrystalline materials, proteins, carbohydrates, and drugs.
According to Bragg's law, when X-rays strike the sample positioned on a stage, the rays are  scattered by the electron clouds around the sample atoms. The  X-ray diffraction or scattering is caused by constructive interference of the X-ray waves that reflect off the internal...
3.9K
Extraction: Advanced Methods00:56

Extraction: Advanced Methods

494
Metal ions can be separated from one another by complexation with organic ligands–the chelating agent– to form uncharged chelates. Here, the chelating agent must contain hydrophobic groups and behave as a weak acid, losing a proton to bind with the metal. Since most organic ligands used in this process are insoluble or undergo oxidation in the aqueous phase, the chelating agent is initially added to the organic phase and extracted into the aqueous phase. The metal-ligand complex is...
494
Extraction: Partition and Distribution Coefficients01:14

Extraction: Partition and Distribution Coefficients

2.6K
The distribution law or Nernst's distribution law is the law that governs the distribution of a solute between two immiscible solvents. This law, also known as the partition law, states that if a solute is added to the mixture of two immiscible solvents at a constant temperature, the solute is distributed between the two solvents in such a way that the ratio of solute concentrations in the solvents remains constant at equilibrium.
For extracting a solute from an aqueous phase into an...
2.6K
Electron Microscope Tomography and Single-particle Reconstruction01:07

Electron Microscope Tomography and Single-particle Reconstruction

2.4K
Transmission electron microscopy (TEM) can be used to determine the 3D structure of biological samples with the help of techniques such as electron microscope tomography and single-particle reconstruction. While single-particle reconstruction can examine macromolecules and macromolecular complexes in vitro conditions only, tomography permits the study of cell components or small cells in vivo.
Electron Tomography
Electron tomography can be performed either in TEM or STEM (scanning transmission...
2.4K
Computed Tomography01:10

Computed Tomography

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Tomography refers to imaging by sections. Computed tomography (CT) is a non-invasive imaging technique that uses computers to analyze several cross-sectional X-rays to reveal minute details about structures in the body.
The technique was invented in the 1970s and is based on the principle that as X-rays pass through the body, they are absorbed or reflected at different levels. In the technique, a patient lies on a motorized platform while a computerized axial tomography (CAT) scanner rotates...
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相关实验视频

Updated: Jul 26, 2025

Outer-Boundary Assisted Segmentation and Quantification of Trabecular Bones by an Imagej Plugin
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Outer-Boundary Assisted Segmentation and Quantification of Trabecular Bones by an Imagej Plugin

Published on: March 14, 2018

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从X射线图像中分离矿石,基于改进的强大的凸点算法.

Lanhao Wang1, Hongdong Hu2, Zhaopeng Li3

  • 1National Engineering Research Center of Coal Preparation and Purification, China University of Mining Technology, Xuzhou, China.

PeerJ. Computer science
|June 22, 2023
PubMed
概括

本研究引入了使用X射线图像的智能矿石细分方法,通过有效处理轮上的伪凸点来提高精度,以便更好地进行矿石分类.

关键词:
形点匹配的形点匹配图像细分 图像细分 图像细分矿石分离 矿石的分离方法

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3D Imaging of Soft-Tissue Samples using an X-ray Specific Staining Method and Nanoscopic Computed Tomography
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3D Imaging of Soft-Tissue Samples using an X-ray Specific Staining Method and Nanoscopic Computed Tomography

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Single Particle Electron Microscopy Reconstruction of the Exosome Complex Using the Random Conical Tilt Method
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Single Particle Electron Microscopy Reconstruction of the Exosome Complex Using the Random Conical Tilt Method

Published on: March 28, 2011

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相关实验视频

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Outer-Boundary Assisted Segmentation and Quantification of Trabecular Bones by an Imagej Plugin
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Outer-Boundary Assisted Segmentation and Quantification of Trabecular Bones by an Imagej Plugin

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3D Imaging of Soft-Tissue Samples using an X-ray Specific Staining Method and Nanoscopic Computed Tomography
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Single Particle Electron Microscopy Reconstruction of the Exosome Complex Using the Random Conical Tilt Method
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科学领域:

  • 矿物加工 矿物加工
  • 图像分析 图像分析
  • 计算几何学的计算几何学

背景情况:

  • 精确的矿石细分从X射线图像对于高效的矿石分类和分离至关重要.
  • 传统的细分方法在工业矿石生产中难以实现实时处理,稳定性和准确性.

研究的目的:

  • 为伪双能X射线图像提出先进的矿石细分方法.
  • 在速度,可靠性和精度方面克服传统方法的局限性.

主要方法:

  • 一种结合轮提取,凸点检测和独特的凸点匹配模块的新方法.
  • 使用自适应值,过,形态操作和基于矢量的凸点检测.
  • 一个关键的贡献是形点匹配模块,它使用辅助线来消除边界点的干扰.

主要成果:

  • 拟议的方法成功地消除了矿石轮上的伪形点的干扰.
  • 在使用矿X射线图像的工业实验中取得了准确的细分结果.
  • 与传统的细分技术相比,表现出优越的性能.

结论:

  • 开发的智能细分方法有效处理矿石的X射线图像.
  • 它满足了工业环境中实时,强大和准确的矿石细分的苛刻要求.
  • 这种方法通过提高分段质量来提高矿石分类的准确性.