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Ultrasound Elastography Combined With Conventional Mri in Differentiating Solid Renal Parenchyma Masses

Ultrasound Elastography Combined With Conventional MRI in Differentiating Solid Renal Parenchyma Masses

Status
Not yet recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT06517368
Enrollment
50
Registered
2024-07-24
Start date
2024-08-10
Completion date
2026-01-31
Last updated
2024-07-24

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Renal Masses

Brief summary

Investigate the diagnostic accuracy of Ultrasound Elastography combined with conventional MRI in evaluation of solid renal masses using histopathology as a gold standard.

Detailed description

Renal masses are increasingly detected incidentally during imaging that plays a key role in the characterization of these masses. Renal masses are a biologically heterogeneous group of tumors ranging from benign masses to cancers that can be indolent or aggressive.Typical imaging methods available for differentiating benign from malignant renal lesions include ultrasound (US), contrast-enhanced ultrasound (CEUS), computed tomography (CT), and magnetic resonance imaging (MRI). Renal mass biopsy is considered the gold standard for determining the presurgical histology of renal masses. US can easily characterize most incidental renal masses , but it cannot always differentiate between benign and malignant solid renal tumors.MR imaging has been gaining popularity in recent years as a problem-solving tool in the evaluation of renal masses.It has several advantages including no exposure to radiation and a superior soft-tissue contrast, and may be a feasible initial imaging option for characterization of renal tumors.Ultrasound elastography (USE) is an imaging technology sensitive to tissue stiffness that was first described in the 1990s.It takes advantage of the changed elasticity of soft tissues resulting from specific pathological or physiological processes. Ultrasound-based methods include strain elastography, two-dimensional shear wave elastography (2D-SWE), point shear wave elastography (pSWE), and vibration-controlled transient elastography (VCTE). US elastography is a non-invasive technique that can assess tissue elasticity, has shown promising results in many clinical settings, and could be able to differentiate between benign and malignant renal lesions based on tissue stiffness.

Interventions

DEVICEMRI, Ultrasound

The patients will undergo both B-mode and sonoelastographic examinations in the supine and lateral decubitus position and will perform during breath-holding after deep inspiration. The elastogram was displayed over the B-mode image in a color scale: red (greatest strain, softest tissue component), green (average strain, intermediate tissue component), and blue (no strain, hardest tissue component) Patients will be examined by MRI with diffusion images and ADC values.

Sponsors

Assiut University
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
40 Years to 70 Years

Inclusion criteria

* patient with solid renal masses.

Exclusion criteria

* patient with cystic renal masses.

Design outcomes

Primary

MeasureTime frameDescription
Ultrasound Elastography combined with conventional mri in differentiating solid renal parenchyma massesBaselineInvestigate the diagnostic accuracy of Ultrasound Elastography combined with conventional MRI in evaluation of solid renal masses using histopathology as a gold stsndard.

Countries

Egypt

Contacts

Primary ContactHager Mohamed Sayed, Master
hagermohamed7127@gmail.com01119330514
Backup ContactAhmed Mostafa Hamed
ahmed.hamed2@med.aun.edu.eg01000024182

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026