2011
DOI: 10.1016/j.ejrad.2011.05.020
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Preliminary study of ultrasonographic tissue quantification of the breast using the acoustic radiation force impulse (ARFI) technology

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Cited by 128 publications
(107 citation statements)
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“…An acoustic push pulse and detection pulse were used to calculate the shear wave velocity (measured in m/second), which increases with the tissue stiffness (Yoneda et al 2010;Tozaki et al 2011). VTTQ involves targeting the lesions to be examined for its elastic properties with a region-of-interest (ROI) cursor having a fixed dimension of 5 × 5 mm (Yoneda et al 2010;Tozaki et al 2011). In all patients, these US examinations were performed by one breast surgeon (K.T., 10 years of experience in breast US) at Nahanishi Clinic Okinawa.…”
Section: Measurement Of Shear Wave Velocity With Vttqmentioning
confidence: 99%
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“…An acoustic push pulse and detection pulse were used to calculate the shear wave velocity (measured in m/second), which increases with the tissue stiffness (Yoneda et al 2010;Tozaki et al 2011). VTTQ involves targeting the lesions to be examined for its elastic properties with a region-of-interest (ROI) cursor having a fixed dimension of 5 × 5 mm (Yoneda et al 2010;Tozaki et al 2011). In all patients, these US examinations were performed by one breast surgeon (K.T., 10 years of experience in breast US) at Nahanishi Clinic Okinawa.…”
Section: Measurement Of Shear Wave Velocity With Vttqmentioning
confidence: 99%
“…Conventional ultrasound (US) was performed using the ACUSON S2000 US System (Mochida Siemens Medical System, Tokyo, Japan) equipped with a large-format 50-mm linear array transducer with a bandwidth of 6-18 MHz (Yoneda et al 2010;Tozaki et al 2011). ARFI imaging (Virtual Touch Tissue Quantification, Mochida Siemens) was performed using the linear array transducer (9L4, Mochida Siemens) with a bandwidth of 4-9 MHz (Yoneda et al 2010;Tozaki et al 2011).…”
Section: Measurement Of Shear Wave Velocity With Vttqmentioning
confidence: 99%
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“…The time to peak displacement at each lateral location is defined as SWV, which is the quantitative form of VTTQ 18,19) . SWV of soft tissue is slower than that of hard tissue, which provided an objective indicator of the tissue stiffness 20) . The lateral displacement is caused by acoustic push instead of freehand compression, which result in more objective results with VTTQ technique.…”
Section: Discussionmentioning
confidence: 99%
“…Эластометрия с оценкой скорости распростране-ния поперечной волны нашла широкое применение в диагностике заболеваний печени, включая цирроз, доброкачественные и злокачественные опухоли [15][16][17], новообразования молочной [18] и предстательной [19] желез. И тем не менее на сегодняшний день эф-Опухоли ГОЛОВЫ и ШЕИ HEAD and NECK tumors Том 7 Vol.…”
Section: Introductionunclassified