Silverman Ronald H, Muratore Robert, Ketterling Jeffrey A, Mamou Jonathan, Coleman D Jackson, Feleppa Ernest J
Riverside Research Institute, New York, NY, USA.
Ultrasound Med Biol. 2006 Nov;32(11):1743-51. doi: 10.1016/j.ultrasmedbio.2006.05.012.
Spectral parameter imaging in both the fundamental and harmonic of backscattered radio-frequency (RF) data were used for immediate visualization of high-intensity focused ultrasound (HIFU) lesion sites. A focused 5-MHz HIFU transducer with a coaxial 9-MHz focused single-element diagnostic transducer was used to create and scan lesions in chicken breast and freshly excised rabbit liver. B-mode images derived from the backscattered RF signal envelope were compared with midband fit (MBF) spectral parameter images in the fundamental (9-MHz) and harmonic (18-MHz) bands of the diagnostic probe. Images of HIFU-induced lesions derived from the MBF to the calibrated spectrum showed improved contrast (approximately 3 dB) of tumor margins versus surround compared with images produced from the conventional signal envelope. MBF parameter images produced from the harmonic band showed higher contrast in attenuated structures (core, shadow) compared with either the conventional envelope (3.3 dB core; 11.6 dB shadow) or MBF images of the fundamental band (4.4 dB core; 7.4 dB shadow). The gradient between the lesion and surround was 3.4 dB/mm, 6.9 dB/mm and 17.2 dB/mm for B-mode, MBF-fundamental mode and MBF-harmonic mode, respectively. Images of threshold and "popcorn" lesions produced in freshly excised rabbit liver were most easily visualized and boundaries best-defined using MBF-harmonic mode.
利用背向散射射频(RF)数据的基波和谐波中的频谱参数成像,对高强度聚焦超声(HIFU)损伤部位进行即时可视化。使用一个带有同轴9MHz聚焦单元素诊断换能器的5MHz聚焦HIFU换能器,在鸡胸肉和新鲜切除的兔肝中创建并扫描损伤。将来自背向散射RF信号包络的B模式图像与诊断探头基波(9MHz)和谐波(18MHz)频段中的中频拟合(MBF)频谱参数图像进行比较。与传统信号包络生成的图像相比,从MBF到校准频谱得到的HIFU诱导损伤图像显示肿瘤边缘与周围组织的对比度提高(约3dB)。与传统包络(核心3.3dB;阴影11.6dB)或基波频段的MBF图像(核心4.4dB;阴影7.4dB)相比,谐波频段生成的MBF参数图像在衰减结构(核心、阴影)中显示出更高的对比度。对于B模式、MBF基波模式和MBF谐波模式,损伤与周围组织之间的梯度分别为3.4dB/mm、6.9dB/mm和17.2dB/mm。在新鲜切除的兔肝中产生的阈值和“爆米花”损伤图像,使用MBF谐波模式最容易可视化,边界也最清晰。