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相关概念视频

IR Frequency Region: X–H Stretching01:24

IR Frequency Region: X–H Stretching

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In IR spectroscopy, signals produced by the X−H bonds (such as C−H, O−H, or N−H) can be observed in the frequency range of  2700–4000 cm–1. The C−H stretching vibration forms sharp bands in the region 2850–3000 cm–1. The presence of the O−H stretching vibration leads to the forming of an absorption band in the frequency range 3650–3200 cm−1. At the same time, N−H stretching can be confirmed by absorption bands in...
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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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Imaging Biological Samples with Optical Microscopy01:18

Imaging Biological Samples with Optical Microscopy

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Optical microscopy uses optic principles to provide detailed images of samples. Antonie van Leeuwenhoek designed the first compound optical microscope in the 17th century to visualize blood cells, bacteria, and yeast cells. In 1830, Joseph Jackson Lister created an essentially modern light microscope. The 20th century saw the development of microscopes with enhanced magnification and resolution.
In optical microscopy, the specimen to be viewed is placed on a glass slide and clipped on the stage...
4.8K
Attenuated Total Reflectance (ATR) Infrared Spectroscopy: Overview01:13

Attenuated Total Reflectance (ATR) Infrared Spectroscopy: Overview

422
Attenuated total reflectance (ATR) infrared spectroscopy is a powerful analytical technique used to study the composition of materials. It is widely employed in chemistry, materials science, forensic science, and other fields where sample characterization is required. ATR has several advantages over traditional transmission IR spectroscopy, including the requirement of little to no sample preparation and the ability to analyze a wide range of samples.
The ATR process begins by directing a beam...
422
Total Internal Reflection Fluorescence Microscopy01:05

Total Internal Reflection Fluorescence Microscopy

5.8K
Total internal reflection fluorescence microscopy or TIRF is an advanced microscopic technique used to visualize fluorophores in samples close to a solid surface with a higher refractive index, such as a glass coverslip. TIRF only allows fluorophores in proximity to the solid surface to be excited. When light from a medium with a lower refractive index (such as air) hits the glass coverslip at a critical angle, the light undergoes total internal reflection stead of passing through the glass.
5.8K
UV–Vis Spectroscopy: Woodward–Fieser Rules01:29

UV–Vis Spectroscopy: Woodward–Fieser Rules

24.7K
UV–Visible absorption spectra of conjugated dienes arise from the lowest energy π → π* transitions. The light-absorbing part of the molecule is called the chromophore, and the substituents directly attached to the chromophore are called auxochromes. A strong correlation exists between the absorption maxima, λmax, and the structure of a conjugated π system. The Woodward–Fieser rules predict the value of λmax for a given...
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相关实验视频

Updated: Jul 22, 2025

Microfluidic Imaging Flow Cytometry by Asymmetric-detection Time-stretch Optical Microscopy ATOM
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Microfluidic Imaging Flow Cytometry by Asymmetric-detection Time-stretch Optical Microscopy ATOM

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可见波长时间延伸光学连贯性断层扫描.

Hossein Asghari

    Optics express
    |July 21, 2023
    PubMed
    概括

    一个新的可见光光子时间延伸光学连贯性断层扫描 (OCT) 系统实现了创纪录的速度. 在时间延长的OCT成像中,这一突破使得生物组织的解剖和功能分析速度更快.

    科学领域:

    • 生物医学光学 生物医学光学
    • 光学成像技术的使用.
    • 光子学 是一个光子学.

    背景情况:

    • 可见光光学相干断层扫描 (OCT) 是一种正在发展中的生物组织的非侵入性成像技术.
    • 光子时间延伸 (PTS) 能够实时实现高速度OCT的福里埃转换.

    研究的目的:

    • 提出和演示可见光光子时间延伸OCT (TS-OCT) 系统的工作原型.
    • 通过在可见波长区域运行来扩大TS-OCT的应用.

    主要方法:

    • 一个新型可见光TS-OCT系统的实验演示.
    • 利用光子时间延伸进行超快的光学信号处理和实时里埃转换.

    主要成果:

    • 实现了前所未有的100千兆伏克塞尔/秒的吞吐量.
    • 达到了4000卷/秒的OCT体积速度.
    • 在可见光光谱中成功实施了TS-OCT.

    结论:

    • 开发的可见光TS-OCT系统在成像速度方面取得了重大进展.
    • 这项技术有可能扩大TS-OCT在生物成像中的应用范围.

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