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Related Concept Videos

Ultrasonography01:17

Ultrasonography

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Ultrasonography is an imaging technique that uses high-frequency sound waves to visualize the body's internal structures. It is a non-invasive and safe procedure that does not involve the use of ionizing radiation, making it widely used in various medical fields. Ultrasonography is used to study heart function, blood flow in the neck or extremities, certain conditions such as gallbladder disease, and fetal growth and development.
During an ultrasonography procedure, a handheld device called...
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Endoscopic Ultrasound (EUS) and FibroScan are valuable diagnostic tools in gastroenterology and hepatology, each with specific applications and techniques.
Endoscopic Ultrasound (EUS):
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Assessing Blood pressure using a doppler ultrasound01:19

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To obtain accurate blood pressure measurements in clinical settings, especially when traditional methods are insufficient, healthcare professionals utilize the Doppler ultrasound technique. This method uses high-frequency sound waves to detect blood flow within the arteries, which is crucial for patients with conditions that complicate circulatory system assessment.
Pre-Procedural Guidelines for Doppler Ultrasound Blood Pressure Assessment:
Preparation of Equipment:
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Ultrasound I: Abdominal Ultrasonography01:20

Ultrasound I: Abdominal Ultrasonography

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Introduction:
Abdominal ultrasonography, commonly known as abdominal ultrasound, is a vital, non-invasive medical imaging technique widely used in healthcare.
Procedure:
This diagnostic tool allows the clinician to visually inspect internal structures within the abdomen, including vital organs such as the liver, gallbladder, pancreas, kidneys, and spleen.
The abdominal ultrasound process begins with applying a special gel to the patient's skin over the abdomen. This gel enhances the...
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Imaging Studies II: Ultrasonography01:24

Imaging Studies II: Ultrasonography

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IntroductionUltrasonography, or renal ultrasound, is a noninvasive medical imaging technique that uses high-frequency sound waves to visualize the kidneys, ureters, bladder, and surrounding tissues.Indications for Urinary System UltrasonographyUrinary system ultrasonography is indicated in various clinical scenarios, such as:Kidney Stones (Urolithiasis): To detect and monitor the size and presence of kidney or urinary tract stones.Hydronephrosis: To assess the dilation of the renal pelvis and...
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Related Experiment Video

Updated: Jul 12, 2025

Wideband Optical Detector of Ultrasound for Medical Imaging Applications
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Emerging Wearable Ultrasound Technology.

Hao Huang, Ray S Wu, Muyang Lin

    IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control
    |October 25, 2023
    PubMed
    Summary

    Wearable ultrasound devices, utilizing soft electronics, offer advantages like continuous monitoring and operator independence. This perspective reviews their materials, fabrication, beamforming, and diverse applications.

    Area of Science:

    • Materials Science
    • Biomedical Engineering
    • Electronics Engineering

    Background:

    • Miniaturization and soft electronics have propelled the development of wearable ultrasound devices.
    • These devices present advantages over traditional probes, including extended use and autonomy.

    Purpose of the Study:

    • To provide an overview of materials, fabrication, beamforming, and applications for wearable ultrasound devices.
    • To review unique design, packaging, and beamforming strategies for rigid, flexible, and stretchable wearable ultrasound devices.

    Main Methods:

    • Review of recent advancements in wearable ultrasound technology.
    • Classification of devices into rigid, flexible, and stretchable categories.
    • Analysis of fabrication strategies and beamforming techniques.

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    Main Results:

    • Wearable ultrasound devices enable continuous monitoring, noninvasive therapies, and advanced human-machine interfaces.
    • Distinctive properties and fabrication strategies exist for rigid, flexible, and stretchable device types.
    • Latest applications of wearable ultrasound technology are highlighted.

    Conclusions:

    • Wearable ultrasound technology is a rapidly growing field with versatile implications.
    • Outstanding challenges and future research directions are identified.
    • The technology promises significant advancements in healthcare and human-computer interaction.