Ultrasound Homogenization

Ultrasound homogenization is a laboratory technique that uses high-frequency sound waves to break down particles, droplets, or cells and produce a more uniform mixture. An ultrasonic probe transfers acoustic energy into a liquid, generating alternating high- and low-pressure cycles that form and collapse cavitation bubbles; the resulting microjets and shear forces disperse suspended materials and disrupt structures. In chemistry, this method supports sample preparation, emulsification, extraction, dissolution, and nanoparticle dispersion, often improving mass transfer and reaction uniformity. Its effectiveness depends on factors such as ultrasonic power, treatment time, temperature, solvent properties, and sample composition.

Ultrasound Homogenization - Related Videos

Education

JoVE Core - Statistics

Test for Homogeneity

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2023

The goodness–of–fit test can be used to decide whether a population fits a given distribution, but it will not suffice to decide whether two populations follow the same unknown distribution. A different test, called the test for homogeneity, can be used to conclude whether two populations have the same distribution. To calculate the test statistic for a test for homogeneity, follow the same procedure as with the test of independence. The hypotheses for the test for homogeneity can be stated as...

Research

JoVE EoE - Viral Growth and Techniques

Isolation of Mosquito-Associated Virus from Mosquito Homogenate

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2026

Source: Huang, D., et al. Mosquito-Associated Virus Isolation from Field-Collected Mosquitoes. J. Vis. Exp. (2022).This video demonstrates the step-by-step procedure for the in vitro isolation of mosquito-associated viruses from mosquito homogenates using fibroblast-like mammalian cells.

Research

JoVE Journal - Medicine
Free Sample

A Novel Application of Musculoskeletal Ultrasound Imaging

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Cited by 14 •

2013

We describe a new ultrasound-based vector tissue Doppler imaging technique to measure muscle contraction velocity, strain and strain rate with sub-millisecond temporal resolution during dynamic activities. This approach provides complementary measurements of dynamic muscle function and could lead to a better understanding of mechanisms underlying musculoskeletal disorders.

Homogeneous Equilibria for Gaseous Reactions

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2020

Homogeneous Equilibria for Gaseous Reactions For gas-phase reactions, the equilibrium constant may be expressed in terms of either the molar concentrations (Kc) or partial pressures (Kp) of the reactants and products. A relation between these two K values may be simply derived from the ideal gas equation and the definition of molarity. According to the ideal gas equation: Molar concentration or molarity is given by number of moles divided by the volume: Thus, where P is partial pressure, V...

Preparation of Homogeneous MALDI Samples for Quantitative Applications

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Cited by 8 •

2016

A protocol for reducing spatial heterogeneities of ion signals in MALDI mass spectrometry by regulating substrate temperature during sample drying processes is demonstrated.

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