Purpose. To evaluate diagnostic value of the virtual touch tissue quantification (VTTQ) for breast lesions with different sizes. Materials and Methods. Patients with 206 breast lesions were categorized into three groups according to lesion size (<10 mm, 10–20 mm, and >20 mm). Breast lesions were examined by conventional ultrasound and VTTQ, and shear wave velocity (SWV) of each lesion and adjacent normal breast tissue were measured. Diagnoses were confirmed by pathological examination after surgery. The receiver-operating characteristic curve (ROC) analyses were performed to evaluate the diagnostic value of SWV, and the area under curves (AUC) was compared among groups. Results. SWV of malignant lesions was much higher than that of benign l...
Purpose: The purpose of this study was to evaluate the effectiveness of quantitative elastography in...
PURPOSE: Virtual Touch tissue quantification is an implementation of ultrasound (US) Acoustic Radiat...
Objective:We evaluated the biologic features of breast tissues using a newly developed non-invasive ...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Objectives. To evaluate virtual touch tissue imaging quantification (VTIQ) as a new elastography met...
Objective:We evaluated the biologic features of breast tissues using a newly developed non-invasive ...
Copyright © 2014 Michael Golatta et al.This is an open access article distributed under theCreative ...
Objectives: To evaluate the diagnostic performance and the clinical benefit of Shear-Wave Elastograp...
Our purpose was to evaluate Virtual Touch IQ (VTIQ) elastography and identify quantitative “rule-in”...
Our purpose was to evaluate Virtual Touch IQ (VTIQ) elastography and identify quantitative "rule-in"...
Sebastian Wojcinski,1 Kathrin Brandhorst,2 Gelareh Sadigh,3 Peter Hillemanns,1 Friedrich Degenhardt2...
Objective: Virtual touch tissue quantification (VTQ) of acoustic radiation force impulse (ARFI) is a...
Virtual touch tissue quantification (VTQ) of acoustic radiation force impulse (ARFI) is a new quanti...
The purpose of our study is to assess the diagnostic performance of quantitative evaluation of tissu...
Background: To evaluate the diagnostic performance of a novel two-dimensional quantitative shear wav...
Purpose: The purpose of this study was to evaluate the effectiveness of quantitative elastography in...
PURPOSE: Virtual Touch tissue quantification is an implementation of ultrasound (US) Acoustic Radiat...
Objective:We evaluated the biologic features of breast tissues using a newly developed non-invasive ...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Objectives. To evaluate virtual touch tissue imaging quantification (VTIQ) as a new elastography met...
Objective:We evaluated the biologic features of breast tissues using a newly developed non-invasive ...
Copyright © 2014 Michael Golatta et al.This is an open access article distributed under theCreative ...
Objectives: To evaluate the diagnostic performance and the clinical benefit of Shear-Wave Elastograp...
Our purpose was to evaluate Virtual Touch IQ (VTIQ) elastography and identify quantitative “rule-in”...
Our purpose was to evaluate Virtual Touch IQ (VTIQ) elastography and identify quantitative "rule-in"...
Sebastian Wojcinski,1 Kathrin Brandhorst,2 Gelareh Sadigh,3 Peter Hillemanns,1 Friedrich Degenhardt2...
Objective: Virtual touch tissue quantification (VTQ) of acoustic radiation force impulse (ARFI) is a...
Virtual touch tissue quantification (VTQ) of acoustic radiation force impulse (ARFI) is a new quanti...
The purpose of our study is to assess the diagnostic performance of quantitative evaluation of tissu...
Background: To evaluate the diagnostic performance of a novel two-dimensional quantitative shear wav...
Purpose: The purpose of this study was to evaluate the effectiveness of quantitative elastography in...
PURPOSE: Virtual Touch tissue quantification is an implementation of ultrasound (US) Acoustic Radiat...
Objective:We evaluated the biologic features of breast tissues using a newly developed non-invasive ...