Booi Rebecca C, Krücker Jochen F, Goodsitt Mitchell M, O'Donnell Matthew, Kapur Ajay, LeCarpentier Gerald L, Roubidoux Marilyn A, Fowlkes J Brian, Carson Paul L
Department of Radiology, University of Michigan, Ann Arbor, MI, USA.
Ultrasound Med Biol. 2007 Mar;33(3):472-82. doi: 10.1016/j.ultrasmedbio.2006.09.005.
We are developing a combined digital mammography/3D ultrasound system to improve detection and/or characterization of breast lesions. Ultrasound scanning through a mammographic paddle could significantly reduce signal level, degrade beam focusing and create reverberations. Thus, appropriate paddle choice is essential for accurate sonographic lesion detection and assessment with this system. In this study, we characterized ultrasound image quality through paddles of varying materials (lexan, polyurethane, TPX, mylar) and thicknesses (0.25 to 2.5 mm). Analytical experiments focused on lexan and TPX, which preliminary results demonstrated were most competitive. Spatial and contrast resolution, side-lobe and range lobe levels, contrast and signal strength were compared with no-paddle images. When the beamforming of the system was corrected to account for imaging through the paddle, the TPX 2.5 mm paddle performed the best. Test objects imaged through this paddle demonstrated < or = 15% reduction in spatial resolution, < or = 7.5 dB signal loss, < or = 3 dB contrast loss and range lobe levels > or = 35 dB below signal maximum over 4 cm. TPX paddles <2.5 mm could also be used with this system, depending on imaging goals. In 10 human subjects with cysts, small CNR losses were observed but were determined to be statistically insignificant. Radiologists concluded that 75% of cysts in through-paddle scans were at least as detectable as in their corresponding direct-contact scans.
我们正在研发一种乳腺数字钼靶/三维超声联合系统,以提高乳腺病变的检测和/或特征描述能力。通过钼靶探头进行超声扫描会显著降低信号水平、使波束聚焦变差并产生混响。因此,选择合适的探头对于使用该系统准确进行超声病变检测和评估至关重要。在本研究中,我们通过不同材料(聚碳酸酯、聚氨酯、TPX、聚酯薄膜)和厚度(0.25至2.5毫米)的探头对超声图像质量进行了表征。分析实验聚焦于聚碳酸酯和TPX,初步结果表明它们最具竞争力。将空间分辨率、对比度分辨率、旁瓣和距离瓣水平、对比度和信号强度与无探头图像进行了比较。当对系统的波束形成进行校正以考虑通过探头成像时,2.5毫米厚的TPX探头表现最佳。通过该探头成像的测试物体显示,空间分辨率降低≤15%,信号损失≤7.5分贝,对比度损失≤3分贝,在4厘米范围内距离瓣水平比信号最大值低≥35分贝。根据成像目标,厚度<2.5毫米 的TPX探头也可用于该系统。在10名患有囊肿的人体受试者中,观察到有小的对比噪声比损失,但经判定在统计学上不显著。放射科医生得出结论,通过探头扫描时,75%的囊肿至少与相应的直接接触扫描一样易于检测。