Ultrasound is a well-established imaging modality for the evaluation of breast disease. The investigators' objective is to characterise the properties of an intravascular ultrasonographic contrast agent SonoVue (sulphur hexafluoride microbubbles) to improve the diagnostic value of the ultrasound examination in patients with different breast lesions. The final purpose of this ultrasonography is to allow the early detection of tumors and to improve the differentiation between benign and malignant lesions. SonoVue® (sulphur hexafluoride microbubbles) is a microbubbles preparation that is stable, resistant to pressure, and specifically designed to be used as a contrast agent for ultrasound imaging. Contrast-enhanced ultrasound could provide a non-invasive technique to evaluate the morphology of breast tumour vascularity.
The main objective of the study is to evaluate the efficacy of SonoVue® to detect breast lesions and define specific microcirculation patterns in patients with four different type of breast lesions (enlarging fibroadenoma, suspect malignant nodules, microcalcification and large malignant nodules) in comparison with pathological specimens in terms of histology diagnosis and microvessel density evaluation.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
59
One contrast enhanced ultrasonography using sonovue / 4.8 ml per injection (maximum of 3 injections)
University Hospital of Tours
Tours, France
From contrast-enhanced ultrasound: Time-intensity curves obtained with SonoVue will help the investigators in differentiation of lesions based on different enhancements.
Time frame: Inclusion period
Histology assessments: Microvessel density assessments to evaluate the total amount of microcirculation and the neoangiogenesis microcirculation present in the samples
Time frame: inclusion period
Off-line time-intensity curves from contrast-enhanced magnetic resonance imaging (MRI) images (malignant nodule greater than 3 cm in diameter only)
Time frame: inclusion period
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