Ultrasound Parameters

Ultrasound parameters are the measurable properties that describe high-frequency sound waves and determine how they interact with biological tissues, making them essential for controlling ultrasound-based bioengineering systems. Key parameters include frequency, wavelength, amplitude, intensity, pulse duration, and duty cycle; together, they govern wave propagation, energy delivery, spatial resolution, and tissue response. By adjusting these variables, researchers can tailor ultrasound for imaging, acoustic manipulation, tissue stimulation, and therapeutic delivery while managing heating and mechanical effects. Understanding these relationships supports reproducible experiments, improves device design, and helps optimize ultrasound protocols for applications such as targeted drug delivery, tissue engineering, and noninvasive diagnostics.

Ultrasound Parameters - Related Videos

Research

JoVE Journal - Medicine

Point-of-Care Ultrasound: A Review of Ultrasound Parameters for Predicting Difficult Airways

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Cited by 8 •

2023

A point-of-care ultrasound (POCUS) is a simple, non-invasive, and portable tool that enables dynamic airway assessment. Several studies have attempted to determine the role of ultrasound parameters as an adjunct to clinical examination in predicting difficult laryngoscopies.

Ultrasound-Induced Neuromodulation Using a Microelectrode Array System

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2025

This video demonstrates the method for inducing the modulation of neural activity in cultured human iPSC-derived neurons in a multi-well microelectrode array, or MEA system using a focused ultrasound transducer.

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.

Non-Invasive High-Frequency Ultrasound and Doppler Imaging of Rat Brain Hemodynamics

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2025

Source: Giustetto, P., et. al., Non-invasive Parenchymal, Vascular and Metabolic High-frequency Ultrasound and Photoacoustic Rat Deep Brain Imaging. J. Vis. Exp. (2015)In this video, we demonstrate the use of high-frequency ultrasound and photoacoustic imaging to study the vasculature and hemoglobin content in the rat brain. This method provides detailed insights into cerebral perfusion and blood oxygenation, enabling non-invasive analysis of brain vascular structures and oxygen distribution.

Education

JoVE Science Education - Engineering

High-frequency Ultrasound Imaging of the Abdominal Aorta

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2023

Source: Amelia R. Adelsperger, Evan H. Phillips, and Craig J. Goergen, Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana High-frequency ultrasound systems are used to acquire high resolution images. Here, the use of a state-of-the-art system will be demonstrated to image the morphology and hemodynamics of small pulsatile arteries and veins found in mice and rats. Ultrasound is a relatively inexpensive, portable, and versatile method for the noninvasive...

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