Literature DB >> 17703660

Ultrasonic tissue characterization of atherosclerosis by a speed-of-sound microscanning system.

Yoshifumi Saijo1, Esmeraldo Santos Filho, Hidehiko Sasaki, Tomoyuki Yambe, Motonao Tanaka, Naohiro Hozumi, Kazuto Kobayashi, Nagaya Okada.   

Abstract

We have been developing a scanning acoustic microscope (SAM) system for medicine and biology featuring quantitative measurement of ultrasonic parameters of soft tissues. In the present study, we propose a new concept sound speed microscopy that can measure the thickness and speed of sound in the tissue using fast Fourier transform of a single pulsed wave instead of burst waves used in conventional SAM systems. Two coronary arteries were frozen and sectioned approximately 10 microm in thickness. They were mounted on glass slides without cover slips. The scanning time of a frame with 300 x 300 pixels was 90 s and two-dimensional distribution of speed of sound was obtained. The speed of sound was 1680 +/- 30 m/s in the thickened intima with collagen fiber, 1520 +/- 8 m/s in the lipid deposition underlying the fibrous cap, and 1810 +/- 25 m/s in a calcified lesion in the intima. These basic measurements will help in the understanding of echo intensity and pattern in intravascular ultrasound images.

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Year:  2007        PMID: 17703660     DOI: 10.1109/tuffc.2007.427

Source DB:  PubMed          Journal:  IEEE Trans Ultrason Ferroelectr Freq Control        ISSN: 0885-3010            Impact factor:   2.725


  7 in total

1.  A Novel Quantitative 500-MHz Acoustic Microscopy System for Ophthalmologic Tissues.

Authors:  Daniel Rohrbach; Anette Jakob; Harriet O Lloyd; Steffen H Tretbar; Ronald H Silverman; Jonathan Mamou
Journal:  IEEE Trans Biomed Eng       Date:  2016-05-26       Impact factor: 4.538

2.  Determination of Ultrastructural Properties of Human Carotid Atherosclerotic Plaques by Scanning Acoustic Microscopy, Micro-Computer Tomography, Scanning Electron Microscopy and Energy Dispersive X-Ray Spectroscopy.

Authors:  Bukem Bilen; Leyla Turker Sener; Isil Albeniz; Meltem Sezen; Mehmet Burcin Unlu; Murat Ugurlucan
Journal:  Sci Rep       Date:  2019-01-24       Impact factor: 4.379

Review 3.  Scanning acoustic microscopy for material evaluation.

Authors:  Hyunung Yu
Journal:  Appl Microsc       Date:  2020-11-05

Review 4.  Basic concept and clinical applications of quantitative ultrasound (QUS) technologies.

Authors:  Tadashi Yamaguchi
Journal:  J Med Ultrason (2001)       Date:  2021-10-20       Impact factor: 1.314

5.  Optical-based artificial palpation sensors for lesion characterization.

Authors:  Jong-Ha Lee; Yoon Nyun Kim; Jeonghun Ku; Hee-Jun Park
Journal:  Sensors (Basel)       Date:  2013-08-21       Impact factor: 3.576

6.  Detection and quantification of bacterial biofilms combining high-frequency acoustic microscopy and targeted lipid microparticles.

Authors:  Pavlos Anastasiadis; Kristina D A Mojica; John S Allen; Michelle L Matter
Journal:  J Nanobiotechnology       Date:  2014-07-06       Impact factor: 10.435

7.  Scanning Acoustic Microscopy and Time-Resolved Fluorescence Spectroscopy for Characterization of Atherosclerotic Plaques.

Authors:  Bukem Bilen; Belkis Gokbulut; Ulku Kafa; Emre Heves; Mehmet Naci Inci; Mehmet Burcin Unlu
Journal:  Sci Rep       Date:  2018-09-26       Impact factor: 4.379

  7 in total

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