Journal article
Simultaneous grayscale and subharmonic ultrasound imaging on a modified commercial scanner
Ultrasonics, v 51(8), pp 890-897
01 Dec 2011
PMID: 21621239
Featured in Collection : UN Sustainable Development Goals @ Drexel
Abstract
Objective: To demonstrate the feasibility of simultaneous dual fundamental grayscale and subharmonic imaging on a modified commercial scanner.
Motivation: The ability to generate signals at half the insonation frequency is exclusive to ultrasound contrast agents (UCA). Thus, subharmonic imaging (SHI; transmitting at f(0)and receiving at f(0)/2) provides improved visualization of UCA within the vasculature via suppression of the surrounding tissue echoes. While this capability has proven useful in a variety of clinical applications, the SHI suppression of surrounding tissue landmarks (which are needed for sonographic navigation) also limits it use as a primary imaging modality. In this paper we present results using a commercial ultrasound scanner modified to allow imaging in both grayscale (f(0) = 4.0 MHz) and SHI (f(0) = 2.5 MHz, f(0)/2 = 1.25 MHz) modes in real time. Methods: A Logiq 9 ultrasound scanner (GE Healthcare, Milwaukee, WI) with a 4C curvilinear probe was modified to provide this capability. Four commercially available UCA (Definity, Lantheus Medical Imaging, North Billerica, MA; Optison, GE Healthcare, Princeton, NJ; SonoVue, Bracco Imaging, Milan, Italy; and Sonazoid, GE Healthcare, Oslo, Norway) were all investigated in vitro over an acoustic output range of 3.34 MPa. In vivo the subharmonic response of Sonazoid was investigated in the portal veins of four canines (open abdominal cavity) and four patients with suspected portal hypertension.
Results: In vitro, the four UCA showed an average maximum subharmonic amplitude of 44.1 +/- 5.4 dB above the noise floor with a maximum subharmonic amplitude of 48.6 +/- 1.6 dB provided by Sonazoid. The average in vivo maximum signal above the noise floor from Sonazoid was 20.8 +/- 2.3 dB in canines and 33.9 +/- 5.2 dB in humans. Subharmonic amplitude as a function of acoustic output in both groups matched the S-curve behavior of the agent observed in vitro. The dual grayscale imaging provided easier sonographic navigation, while the degree of tissue suppression in SHI mode varied greatly on a case by case basis.
Conclusions: These results demonstrate the feasibility of dual grayscale and SHI on a modified commercial scanner. The ability to simultaneously visualize both imaging modes in real time should improve the applicability of SHI as a future primary clinical imaging modality. (C) 2011 Elsevier B.V. All rights reserved.
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Details
- Title
- Simultaneous grayscale and subharmonic ultrasound imaging on a modified commercial scanner
- Creators
- J. R. Eisenbrey - Thomas Jefferson UniversityJ. K. Dave - Thomas Jefferson UniversityV. G. Halldorsdottir - Thomas Jefferson UniversityD. A. Merton - Thomas Jefferson UniversityP. Machado - Thomas Jefferson UniversityJ. B. Liu - Thomas Jefferson UniversityC. Miller - Thomas Jefferson UniversityJ. M. Gonzalez - Thomas Jefferson UniversityS. Park - GE Global Research (United States)S. Dianis - GE Global ResearchC. L. Chalek - GE Global ResearchK. E. Thomenius - GE Global ResearchD. B. Brown - Thomas Jefferson UniversityV. Navarro - Thomas Jefferson UniversityF. Forsberg - Thomas Jefferson University
- Publication Details
- Ultrasonics, v 51(8), pp 890-897
- Publisher
- Elsevier
- Number of pages
- 8
- Grant note
- R01CA140338 / NATIONAL CANCER INSTITUTE; United States Department of Health & Human Services; National Institutes of Health (NIH) - USA; NIH National Cancer Institute (NCI) W81XWH-08-1-0503 / US Army Medical Research Material Command Grant RC1DK087365 / NATIONAL INSTITUTE OF DIABETES AND DIGESTIVE AND KIDNEY DISEASES; United States Department of Health & Human Services; National Institutes of Health (NIH) - USA; NIH National Institute of Diabetes & Digestive & Kidney Diseases (NIDDK) R21HL081892 / NATIONAL HEART, LUNG, AND BLOOD INSTITUTE; United States Department of Health & Human Services; National Institutes of Health (NIH) - USA; NIH National Heart Lung & Blood Institute (NHLBI) 0655441U / AHA; American Heart Association R21 HL081892; RC1 DK087365; RO1CA140338 / NIH; United States Department of Health & Human Services; National Institutes of Health (NIH) - USA
- Resource Type
- Journal article
- Language
- English
- Academic Unit
- School of Biomedical Engineering, Science, and Health Systems; Health Management and Policy
- Web of Science ID
- WOS:000293011800006
- Scopus ID
- 2-s2.0-80051529751
- Other Identifier
- 991019167684204721
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- Collaboration types
- Industry collaboration
- Domestic collaboration
- International collaboration
- Web of Science research areas
- Acoustics
- Radiology, Nuclear Medicine & Medical Imaging