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NCT04863443

Nonlinear Elasticity Mapping of Breast Masses

Completed Last updated 7 October 2025
What this trial tests

trial testing Ultrasound in Breast Cancer in 172 participants. Completed in 30 August 2025.

Timeline
24 July 2014
Primary endpoint
30 August 2025
30 August 2025

Quick facts

Lead sponsorMayo Clinic
StatusCompleted
Study typeOBSERVATIONAL
Enrollment172
Start date24 July 2014
Primary completion30 August 2025
Estimated completion30 August 2025
Sites2 locations across United States

Drugs / interventions tested

Conditions studied

Sponsor

Mayo Clinic

Who can join

18 and older, any sex, with Breast Cancer. Patients with the condition only — healthy volunteers not accepted.

Sponsor's own description

This proposed technique, called "Nonlinear Elasticity Mapping (NEM)", is an innovative approach to estimate (i.e., linear and nonlinear) elasticity to provide complementary and relevant information for identification and characterization of breast masses. The proposed technique includes imaging the (nonlinear) elasticity parameter in a quantitative manner and measuring two new and relevant parameters. These parameters, together with linear elasticity, are used to differentiate breast masses. The first parameter is the nonlinearity of the elasticity.

Publications & conference data

No peer-reviewed publications indexed yet for this trial. Completed trials usually publish results within 12-18 months.

Verify or expand the search:

Other trials of Ultrasound

Trials testing the same drug.

Other recruiting trials for Breast Cancer

Currently open trials in the same condition.

Other Mayo Clinic trials

Trials by the same sponsor.

Verify against primary sources

Data sources for this page

Drug Landscape aggregates and links these public records for informational use only. Always verify against the primary source before clinical or regulatory decisions. Canonical URL: https://druglandscape.com/trial/NCT04863443.

Primary sources · FDA · ClinicalTrials.gov · EMA · SEC EDGAR · ChEMBL · Wikidata · full sourcing