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NCT Number: NCT07270601

Development of a Quantifiable Ultrasound Biomarker for Hepatic Steatosis

The research study is considering a non-invasive way to measure the percentage of fat in the liver using ultrasound. This could help detect early signs of a very common condition called metabolic dysfunction-associated steatotic liver disease (MASLD). Current tests, like MRI or biopsy, can be expensive or invasive. If successful, this ultrasound tool could become an easier and more accessible way to monitor liver health - especially for people with obesity, diabetes, high blood pressure, or high cholesterol.

Recruiting

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Key information

Age range

18 year–75 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

University of Washington

Seattle, Washington, 98195, United States

Location status: Recruiting

Location contact

Manish Dhyani, MD

PRINCIPAL_INVESTIGATOR

Research Fellow

CONTACT

[email protected]

206-616-0397

Rotonya Carr, MD

PRINCIPAL_INVESTIGATOR

About this study

The objective is to develop a novel multiparametric ultrasound-based technique to quantify the amount of steatosis in the liver by using the current MRI-based gold-standard - MRI proton density fat fraction (MRI-PDFF) as a clinical reference. This clinical development study will only collect the required dataset from healthy volunteers and subjects with different degrees of steatosis in the liver, particularly patients with MASLD, formerly non-alcoholic fatty liver disease (NAFLD). It will capture the raw radiofrequency data required for the development of this new radiologic biomarker on a research ultrasound imaging device. In addition, various other clinical and radiological datasets will be captured to support the ground truthing, development and training of the novel ultrasound-based multiparametric biomarker.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

Diseased subject:

  • Adult patients (age 18 - 75 years)
  • Consent to participate in the study
  • Diagnosed or suspected MASLD from the hepatology clinic, OR
  • High-risk population meeting the adult cardiometabolic criteria (defined as the presence of at least one of the following: diabetes, obesity (BMI ≥ 25 kg/m2), hypercholesterolemia, and hypertension)

Healthy volunteer:

  • Adult patients (age 18 - 75 years)
  • Consent to participate in the study
  • No suspicion of MASLD by laboratory/imaging/clinical examinations
  • Absence of known pre-existing conditions (metabolic syndrome, diabetes mellitus, obesity, insulin resistance, dyslipidemia, etc.)

Exclusion criteria

  • Pregnancy or nursing.
  • Contraindications to MRI including, but not limited to, severe claustrophobia, pacemaker, or existing metallic/mechanical implant(s).
  • Acute illness/cognitive impairment resulting in an inability to cooperate with the MRI and ultrasound breath-holding instructions.
  • BMI > 35 kg/m2
  • History of excessive alcohol consumption according to the updated MASLD criteria (>2 drinks/day OR >210 grams/week for males AND >1 drink/day OR >140 grams/week for females) or drug use over the past 2 years.
  • Known acute or chronic hepatitis; or other etiology of liver disease.
  • Presence of known congenital hepatic anomaly.
  • Known cirrhosis
  • Known active cancer

Treatment and study plan

Verasonics NXT Data Acquisition System

Device

A research ultrasound imaging device to capture raw radiofrequency ultrasound data for the following parameters:

  • B-mode imaging
  • Attenuation coefficient
  • Backscatter coefficient
  • Speed of sound
  • Shear wave elastography

Philips EPIQ Elite

Device

A premium ultrasound system with software package to support imaging research studies.

EchoSense FibroScan

Device

A non-invasive ultrasound solution that accurately measures liver stiffness and liver steatosis.

Philips 3T Ingenia Elition

Device

A 3-tesla magnetic resonance imaging (MRI) system

Primary outcomes

  1. Multiparametric Ultrasound Biomarker vs. MR-PDFF

    Time frame: 1 year

    Clinical qualification of the multiparametric ultrasound-derived fat fraction, defined as its agreement with the established clinical reference, MRI proton density fat fraction (MRI-PDFF) expressed as absolute percentage, in bench testing analysis.

Secondary outcomes

  1. Individual Ultrasound parameter vs. MRI-PDFF

    Time frame: 1 year

    Evaluation of each ultrasound parameter (backscatter, attenuation and speed of sound) fat percentage values separately against MRI-PDFF.

  2. Ultrasound Shear Wave vs MR Elastography

    Time frame: 1 year

    Evaluation of ultrasound shear wave elastography-derived tissue stiffness values in kilopascals compared to MR elastography.

Study contacts

Contact information is provided by the study sponsor or research team.

Laura Sissons-Ross Research Manager

CONTACT

[email protected]

206-616-0397

Sponsors and collaborators

Lead sponsor

ContextVision AB

Industry

Collaborators

  • University of Washington

Registry information

Official study title

Development and Diagnostic Evaluation of a Novel Quantifiable Ultrasound Based Multi-parametric Biomarker for Hepatic Steatosis in Patients With Suspected MASLD ( LYNX )

Acronym: LYNX

Important dates

Study start
2025
Primary completion
2026
Study completion
2026
First posted
Dec 8, 2025
Registry last updated
Dec 8, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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