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相关概念视频

Subcellular Fractionation01:32

Subcellular Fractionation

The homogenate obtained after cell lysis contains various membrane-bound organelles that can be further separated into pure fractions by subcellular fractionation. These isolates are used to study specific cellular components, analyze localized protein activity, and are even employed in diagnostics. Fractionation is typically achieved using centrifugation methods, the most common being density-gradient and differential centrifugation.
Differential Centrifugation
Differential centrifugation is...
Turbulent Flow01:24

Turbulent Flow

Turbulent flow is characterized by unpredictable fluctuations in velocity and pressure, which result in a chaotic fluid movement distinct from the orderly patterns of laminar flow. While laminar flow is governed by smooth, parallel layers with minimal mixing, turbulent flow exhibits highly irregular, three-dimensional patterns. This behavior arises due to instabilities in the fluid's velocity profile, and amplifies as the flow velocity increases. Minor disturbances, known as turbulent spots,...
Rapidly Varying Flow01:24

Rapidly Varying Flow

Rapidly varying flow (RVF) in open channels is characterized by abrupt changes in flow depth over a short distance, with the rate of depth change relative to distance often approaching unity. These flows are inherently complex due to their transient and multi-dimensional nature, making exact analysis difficult. However, approximate solutions using simplified models provide valuable insights into their behavior.Key Features of Rapidly Varying FlowRVF is commonly observed in scenarios involving...
Gradually Varying Flow01:29

Gradually Varying Flow

Gradually varying flow (GVF) in open channels describes situations where water depth changes slowly along the channel due to factors like non-uniform bed slope, channel shape variations, or obstructions. This flow type occurs when the depth adjusts gradually to balance gravitational forces, shear forces, and energy requirements, resulting in a low rate of depth change.Characteristics of Gradually Varying FlowGVF is commonly observed in natural streams, rivers, and canals, where flow depth...
Flow Cytometry01:23

Flow Cytometry

The development of flow cytometry techniques began in 1934 with initial attempts by Andrew Moldavan, a bacteriologist who counted the cells in a flowing capillary system. Moldavan pumped cells through a capillary tube focused under a microscope for visualization. The invention of photometry allowed the measurement of differentially-stained cells, and Louis Kamentsky developed the first multiparameter flow cytometer in 1965 to identify and count the cancer cells in cervical tissue specimens.
In...
Downstream Processing01:29

Downstream Processing

Downstream processing begins once fermentation is complete and involves a series of steps to recover and purify products such as acids, vitamins, antibiotics, or proteins.Cell HarvestingFor example, for intracellular protein-based products, the first step is harvesting the cells. This is typically achieved using centrifugation or filtration to separate the cells from the liquid phase.Cell Disruption for Intracellular ProductsIf the target product is intracellular, the harvested cells must be...

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相关实验视频

Updated: Jul 12, 2026

Asymmetrical Flow Field-Flow Fractionation for Sizing of Gold Nanoparticles in Suspension
09:33

Asymmetrical Flow Field-Flow Fractionation for Sizing of Gold Nanoparticles in Suspension

Published on: September 11, 2020

沉积场流量分成:应用程序

J J Kirkland, W W Yau

    Science (New York, N.Y.)
    |October 8, 1982
    PubMed
    概括

    沉积场流分化 (SFFF) 为生物大分子和颗粒提供了高分辨率的分离. 与传统离心法相比,这种先进的技术在更短的时间内实现了更高的分辨率.

    科学领域:

    • 分析化学 分析化学
    • 生物物理学的生物物理.
    • 材料科学 材料科学 材料科学

    背景情况:

    • 沉积场流分化 (SFFF) 是一种新兴的分离技术.
    • 传统的离心法在分辨率和时间效率方面存在局限性.

    研究的目的:

    • 突出SFFF在分离生物大分子,合物和颗粒物的能力.
    • 为了比较SFFF与传统离心机的性能.

    主要方法:

    • 使用先进的仪器仪表进行SFFF操作.
    • 实现高转子转速,可达每分钟32,000转 (大约3200转/小时). 85,000 克) 的产品.

    主要成果:

    • SFFF可实现各种材料的高分辨率分离,包括那些分子重量低至5 x 10^5.5的材料.
    • 与离心法相比,该方法显示出更高的分辨率.
    • SFFF可以在更短的时间内实现这些分离.

    结论:

    • SFFF是一种强大而高效的方法,用于分离广泛的生物和颗粒物材料.
    • 该技术在分辨率和速度方面比传统方法具有优势.

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    Published on: September 11, 2020

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    Capturing Flow-weighted Water and Suspended Particulates from Agricultural Canals During Drainage Events

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    Single Step Isolation of Extracellular Vesicles from Large-Volume Samples with a Bifurcated A4F Microfluidic Device

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  • 仪器仪表的进步提高了SFFF对复杂样品的适用性.