We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress hp
Sign In
Advertise with Us

SonoScape

SonoScape develops, manufactures and markets medical equipment in the fields of ultrasound, endoscopy, electrocardiog... read more Featured Products: More products

Download Mobile App




Pushing the Boundaries with CEUS and US Elastography

By HospiMedica International staff writers
Posted on 14 Feb 2017
Ultrasound elastography and contrast enhanced ultrasound (CEUS) are among the latest advances in ultrasound (US) technology that offer improved spatial and temporal resolution in the detection and characterization of abnormal tissues. More...
SonoScape is leading the field in developing this technology that is improving outcomes for patients.

Leader in the field, Andrej Lyshchik, M.D., Ph.D., Assistant Professor at the Department of Radiology at Thomas Jefferson University Hospital in Philadelphia, US, is enthusiastic for SonoScape’s US elastography. He welcomed the nature of US elastography as a non-invasive technique that allows detection and characterization of tissues with abnormal biomechanical properties.

US Elastography
Currently, there are three main types of US elastography: transient elastography, compression elastography and Acoustic Radiation Force Impulse (ARFI) imaging. Transient elastography uses an external device that generates mechanical displacement of tissues and a built-in US transducer to register shear wave that propagates within the examined tissues. ARFI imaging uses acoustic radiation forces to generate tissue displacement and map its elastic properties based on the speed of sheer wave propagation.

To date, liver, kidney, breast and prostate are among the organs that show most benefit from these technologies. In particular, Dr Lyshchik explained that one of the most commonly used clinical applications of ARFI and transient elastography is for the evaluation of patients with chronic liver disease.

CEUS in the Evaluation Of Tumor Blood Flow
Likewise, CEUS also promises improvements in patient management with its high resolution, real-time visualization of new blood vessels within tumors that increases diagnostic accuracy. CEUS can be used on SonoScape’s scanners.

CEUS uses US contrast agents that are composed of a gas microbubbles, encapsulated by an outer protein or lipid shell. These microbubbles are of a diameter (1-8 µm) that enables passage through the pulmonary capillaries, but restricts the microbubbles to the vasculature, making them excellent intravascular blood pool agents. Unlike contrast agents for MRI and CT, US contrast agents are not nephrotoxic and have no renal contraindications, making them an exceptionally safe to use.

Detecting such changes in tumor vascularity (including blood flow kinetics and microvascular density) is a recognized indicator of treatment response via visualization of the perfusion of US contrast agents. Parameters such as the time required from injection to contrast arrival, rate of US contrast agent inflow, rate of US contrast agent washout, and cumulative US contrast agents signal over time (an indicator of net blood flow) have all been shown to be potentially useful indicators of treatment response. CEUS also provides the opportunity to create 3D parametric maps of tumor perfusion to illustrate the differences in intra-tumoral blood flow kinetics.

Dr Lyshchik explained that within oncology, CEUS can detect changes in tumor vascularity that provide an indicator of treatment response to certain therapies. He remarked that due to the real time nature of ultrasound and the blood pooling properties of US contrast agents, visualization of UCA perfusion provides an indicator of the blood flow kinetics and microvascular density of the tumor.

CEUS of Liver Nodules and Hepatocellular Carcinoma
Of note, CEUS is also a potentially safer, less expensive and more readily available technique for characterizing focal liver nodules in patients at risk for hepatocellular carcinoma, compared to the current clinical standard. This significant cancer, rated as the fifth most common cancer worldwide with an annual incidence of over 550,000, predominantly affects patients with cirrhosis and chronic hepatitis.

But imaging to diagnose hepatocellular carcinoma can be challenging, especially in patients with advanced cirrhosis, in which structural and physiological alterations of the liver can impair detection of the cancer. However, studies of CEUS, which is available on SonoScape’s scanners in this capacity, have demonstrated safety, high specificity and positive predictive value for diagnosis of hepatocellular carcinoma compared to hepatobiliary agent gadoxetate-enhanced MRI.

In an effort to facilitate the clinical use of CEUS, the American College of Radiology recently introduced the CEUS Liver Imaging Reporting and Data System (CEUS LI-RADS), which provides standardisation of CEUS examination and reporting, and allows liver nodule classification based on their likelihood to be hepatocellular carcinoma.

Finally, worth a mention is CEUS-guided biopsy, which is another application of SonoScape’s technology that targets and biopsies lesions, normally invisible or hard to detect, for example, the small nodules of hepatocellular carcinoma on cirrhosis or adenocarcinoma’s areas in the prostate. It can also target viable areas of large, necrotic tumors.


Gold Member
12-Channel ECG
CM1200B
Radiology Monitor
MDNC-6121 Barco Nio Color 5.8MP
Digital Radiography System (Ceiling Free)
Digix CF Series
Gas Analyzer
GE SAM
Read the full article by registering today, it's FREE! It's Free!
Register now for FREE to HospiMedica.com and get access to news and events that shape the world of Hospital Medicine.
  • Free digital version edition of HospiMedica International sent by email on regular basis
  • Free print version of HospiMedica International magazine (available only outside USA and Canada).
  • Free and unlimited access to back issues of HospiMedica International in digital format
  • Free HospiMedica International Newsletter sent every week containing the latest news
  • Free breaking news sent via email
  • Free access to Events Calendar
  • Free access to LinkXpress new product services
  • REGISTRATION IS FREE AND EASY!
Click here to Register








Channels

Artificial Intelligence

view channel
Image: Artificial intelligence (AI) standalone performance and reader performance with versus without AI assistance. (A) Receiver operating characteristics (ROC) curve for AI standalone performance in the US dataset (AUC 0.899, 95% CI 0.858 to 0.939). (B) ROC curve for AI standalone performance in the Korean dataset (AUC 0.963, 95% CI 0.946 to 0.975). (C) Pooled reader ROC without (AUC 0.718) versus with (AUC 0.852) AI assistance in the Korean dataset; P<0.001. AUC, area under the receiver operating characteristics curve. (Leonard Sunwoo et al., Journal of NeuroInterventional Surgery (2026). DOI: 10.1136/jnis-2026-025339)

AI Improves Non-Contrast CT Interpretation for Time-Sensitive Stroke Assessment

Acute ischemic stroke occurs when a blood vessel in the brain becomes blocked, requiring rapid diagnosis to enable timely reperfusion therapy. Emergency departments often use computed tomography angiography... Read more

Critical Care

view channel
Image: Anatomically guided sonography for trauma assessment includes a mixed reality headset (e.g., top left). Example views show virtual augmentation overlays for anatomy registration and ultrasound probe guidance on a test surrogate. The anatomical display is customized based on the organ or region being targeted with the ultrasound probe. (Robert S. Armiger, Anna E. Knight, Catherine M. Carneal, et al. Journal of Medical Imaging (2026). DOI: 10.1117/1.jmi.13.4.045001)

Anatomical Guidance System Improves Trauma Ultrasound Acquisition by Novice Users

Focused assessment with sonography for trauma (FAST) helps clinicians detect free fluid and signs of internal bleeding in injured patients, but obtaining reliable images can be difficult for inexperienced operators.... Read more

Surgical Techniques

view channel
Image: Associate Professor Menglin Chen studies how the light-sensitive nanoparticles affect living cells. The screen shows calcium being released inside a cell after nanoparticles taken up by the cell are exposed to blue light. Calcium plays an important role in cellular signaling, and the experiment helps the researchers understand how the nanoparticles can translate light into biological activity. (Photo courtesy of Aarhus University, Johanne Holm Jensen)

Light-Activated Nanoparticles May Offer New Approach to Retinal Prostheses

Retinitis pigmentosa is a degenerative retinal disorder in which photoreceptors progressively die, reducing visual signals to the brain while leaving surviving inner retinal circuits underused.... Read more

Point of Care

view channel
Image Credit: 123RF

Continuous Glucose Monitoring Identifies Cardiometabolic Risk in Adults Without Diabetes

Dysglycemia—abnormal blood glucose regulation—can fluctuate throughout the day and often escape conventional screening. Clinicians typically rely on fasting plasma glucose and hemoglobin A1c, which offer... Read more

Business

view channel
Image: LigaSure RAS Maryland, designed for the Valleylab FT10 platform on Hugo RAS, seals and cuts vessels, tissue, and lymphatics up to 7 mm in diameter (Photo courtesy of Medtronic)

Medtronic Receives FDA Clearance for Vessel-Sealing Instrument for Robotic Surgery

As robotic-assisted surgery expands across U.S. hospitals, teams increasingly seek energy instruments with the familiarity and performance of tools used in open and laparoscopic procedures.... Read more
Copyright © 2000-2026 Globetech Media. All rights reserved.