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相关概念视频

Interference and Diffraction02:18

Interference and Diffraction

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Interference is a characteristic phenomenon exhibited by waves. When two electromagnetic waves interact with their peaks and troughs coinciding, a resulting wave with enhanced amplitude is produced. This is known as constructive interference. In this case, the two waves interacting are in phase with each other.
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Phase Contrast and Differential Interference Contrast Microscopy01:26

Phase Contrast and Differential Interference Contrast Microscopy

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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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Masking and Demasking Agents01:19

Masking and Demasking Agents

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EDTA titrations may necessitate masking and demasking agents to temporarily protect a particular metal ion in a mixture from the EDTA reaction. These agents facilitate the sequential analysis of the metal ions by forming stable complexes with some—but not all—metal ions during certain steps.
There are many masking agents, such as cyanide, fluoride, triethanolamine, thiourea, and 2,3-bis(sulfanyl)propan-1-ol (formerly 2,3-dimercapto-1-propanol), with the masking agent chosen based on...
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Insensitive Nuclei Enhanced by Polarization Transfer (INEPT)01:15

Insensitive Nuclei Enhanced by Polarization Transfer (INEPT)

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Insensitive Nuclei Enhanced by Polarization Transfer (INEPT) is an advanced Nuclear Magnetic Resonance (NMR) technique specifically designed to detect and enhance the signals of low-abundance nuclei, such as carbon-13 and nitrogen-15, in small molecules. The fundamental principle behind INEPT is the transfer of polarization from a more abundant and highly polarizable nucleus, typically hydrogen-1, to the low-abundance nucleus of interest. This process effectively boosts the NMR signal of the...
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Theories of Dissolution: Diffusion Layer Model01:15

Theories of Dissolution: Diffusion Layer Model

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Dissolution, the process by which drug particles dissolve in a solvent, is explained by the diffusion layer model, a theoretical framework that simulates the absorption of oral drugs and allows us to analyze experimental data.
This process starts with a thin layer, saturated with the drug, forming at the interface between the solid and liquid. The solute then diffuses from this layer into the main solution. The Noyes-Whitney equation suggests that the rate of dissolution relies on the diffusion...
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Subliminal Perception01:15

Subliminal Perception

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Subliminal perception refers to the processing of sensory information that occurs below the level of conscious awareness. Researchers study subliminal perception by presenting a stimulus, such as a word or image, very quickly, typically around 50 milliseconds. This rapid presentation is often followed by another stimulus, such as a pattern of dots or lines, which blocks further mental processing of the initial stimulus. As a result, if participants cannot identify the initial stimulus better...
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相关实验视频

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How to Create and Use Binocular Rivalry
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How to Create and Use Binocular Rivalry

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通过不透明的散射层进行非侵入性成像.

Jacopo Bertolotti1, Elbert G van Putten, Christian Blum

  • 1Complex Photonic Systems, MESA+ Institute for Nanotechnology, University of Twente, PO Box 217, 7500 AE Enschede, The Netherlands. j.bertolotti@utwente.nl

Nature
|November 9, 2012
PubMed
概括

这项研究引入了一种新的非侵入性光学成像方法,用于可视化隐藏在不透明散射层后面的光物体. 该技术成功地通过散射介质获取详细的图像,而无需侵入性程序.

科学领域:

  • 光学是什么?光学是什么?光学是什么?
  • 生物医学成像技术 生物医学成像技术
  • 材料科学 材料科学 材料科学

背景情况:

  • 非侵入性光学成像在各种科学领域至关重要.
  • 目前的技术难以穿透不透明的散射材料.
  • 现有的先进方法往往需要在散射层后面进行侵入性手术或专用设备.

研究的目的:

  • 开发一种非侵入性的光学成像方法,用于可视化被不透明的散射层遮蔽的光物体.
  • 为了克服当前在散射介质中的成像技术的局限性.
  • 通过不透明的障碍物进行成像的概括方法.

主要方法:

  • 通过散射层传输的激光照明隐藏的光物体.
  • 扫描激光束的冲击角度.
  • 从前面检测总光,并使用代算法重建图像.

主要成果:

  • 成功地获取了50微米光物体的详细图像,隐藏在不透明光学扩散器后面6毫米.
  • 获得了一个复杂的生物样本的图像,被封闭在两个不透明的屏幕之间.
  • 证明了该方法通过强烈散射介质成像的能力.

更多相关视频

Merging Ion Concentration Polarization between Juxtaposed Ion Exchange Membranes to Block the Propagation of the Polarization Zone
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Demonstration of Spin-Multiplexed and Direction-Multiplexed All-Dielectric Visible Metaholograms
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相关实验视频

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Merging Ion Concentration Polarization between Juxtaposed Ion Exchange Membranes to Block the Propagation of the Polarization Zone

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结论:

  • 开发的光学方法使隐藏的光物体通过不透明的散射层进行非侵入性成像.
  • 这种技术比现有的侵入性方法有了显著的进步.
  • 这种方法有可能对其他对比机制和通过散射介质成像的实验几何学进行概括.