Yousefi Ali, Goertz David E, Hynynen Kullervo
Electrical Engineering Department, University of Toronto, Toronto, ON M4N 3M5 Canada.
IEEE Trans Med Imaging. 2009 May;28(5):763-74. doi: 10.1109/TMI.2008.2012017. Epub 2009 Jan 13.
Transcranial ultrasound imaging is limited by poor acoustic windows and skull induced distortions to the beam. Shear waves in the skull have a better impedance match with longitudinal waves in water and thereby produce a more coherent focus inside the skull. This study presents work on an imaging technique that utilizes shear-wave propagation through the skull. The pulse-echo lateral distortion introduced by the skull was analyzed by imaging a point scatterer behind ex vivo human craniums at 1 MHz. Brightness images of the target obtained with either shear-mode or conventional longitudinal-mode transmission in the bone were assessed to quantify lateral resolution. As compared to longitudinal-mode transmission, it was found that the use of shear-mode resulted in improved localization along the propagation (depth) axis at the expense of degraded lateral resolution. The signal-to-noise ratio (SNR) limitations introduced by severe attenuation of shear-waves in the skull were overcome with frequency modulated (FM) coded excitations. This gain in SNR was exchanged with resolution and used for compensation of frequency-dependent attenuation in the skull, resulting in a greater than 20% improvement in lateral resolution for both modes of transcranial transmission. The results are an important step towards enhancing the quality of transcranial sonography.
经颅超声成像受到声学窗口不佳以及颅骨对波束产生的畸变的限制。颅骨中的剪切波与水中的纵波具有更好的阻抗匹配,从而在颅骨内部产生更相干的焦点。本研究展示了一种利用剪切波在颅骨中传播的成像技术的相关工作。通过对离体人类颅骨后方的点散射体进行1兆赫兹的成像,分析了颅骨引入的脉冲回波横向畸变。对在骨中使用剪切模式或传统纵波模式传输获得的目标亮度图像进行评估,以量化横向分辨率。与纵波模式传输相比,发现使用剪切模式会导致沿传播(深度)轴的定位得到改善,但代价是横向分辨率降低。通过调频(FM)编码激励克服了颅骨中剪切波严重衰减所带来的信噪比(SNR)限制。这种信噪比的提升与分辨率进行了交换,并用于补偿颅骨中与频率相关的衰减,从而使两种经颅传输模式的横向分辨率提高了20%以上。这些结果是提高经颅超声检查质量的重要一步。