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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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Imaging Studies II: Ultrasonography01:24

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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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Updated: Aug 27, 2025

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Multi Spherical Wave Imaging Method Based on Ultrasonic Array.

Zhi-Ying Liu1,2, Ping Zhang1,3, Bi-Xing Zhang1,2

  • 1Key Laboratory of Acoustics, Institute of Acoustics, Chinese Academy of Sciences, Beijing 100190, China.

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|September 23, 2022
PubMed
Summary

This study introduces multi spherical wave imaging using ultrasonic arrays, significantly expanding detection range beyond traditional plane wave methods. This advanced technique offers a simpler, faster alternative for improved ultrasonic imaging applications.

Keywords:
composite spherical wave imagingmulti spherical wave imagingplane wave imagingultrasonic array

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Area of Science:

  • Ultrasonic imaging
  • Wave propagation in solids
  • Non-destructive testing

Background:

  • Traditional plane wave imaging is limited by directivity, restricting its effective range.
  • Ultrasonic arrays are crucial for advanced imaging techniques.
  • Understanding wave behavior in solid media is key for effective non-destructive evaluation.

Purpose of the Study:

  • To propose and analyze a novel multi spherical wave imaging method using ultrasonic arrays.
  • To overcome the range limitations of conventional plane wave imaging.
  • To offer a computationally efficient and practical alternative for ultrasonic detection.

Main Methods:

  • Theoretical analysis of multi spherical wave excitation characteristics.
  • Derivation of echo delay calculation for multi spherical wave imaging.
  • Experimental comparison with conventional ultrasonic plane wave imaging.

Main Results:

  • Multi spherical wave imaging demonstrates a significantly improved detection range, independent of transducer size.
  • The proposed method effectively utilizes both compression and shear waves.
  • Experimental validation confirms superior performance over traditional plane wave imaging.

Conclusions:

  • Multi spherical wave imaging offers a substantial advancement in ultrasonic detection range.
  • The method is computationally simpler and faster than multi plane wave techniques.
  • This technique holds high potential for practical applications in non-destructive testing and material analysis.