Li Yang, Samant Pratik, Wang Siqi, Behrooz A, Li Dengwang, Xiang Liangzhong
IEEE Trans Ultrason Ferroelectr Freq Control. 2020 Aug;67(8):1613-1619. doi: 10.1109/TUFFC.2020.2983732. Epub 2020 Apr 6.
X-ray-induced acoustic computed tomography (XACT) is a promising imaging modality combining high X-ray absorption contrast with the 3-D propagation advantages provided by high-resolution ultrasound waves. The purpose of this study was to optimize the configuration of a 3-D XACT imaging system for bone imaging. A 280 ultrasonic sensors with peak frequency of 10 MHz was designed to distribute on a spherical surface to optimize the 3-D volumetric imaging capability. We performed both theoretical calculations and simulations of this optimized XACT imaging configuration on a mouse-sized digital phantom containing various X-ray absorption coefficients. Iteration algorithm based on total variation has been used for 3-D XACT image reconstruction. The spatial resolution of imaging was estimated to about [Formula: see text] along both axial and lateral directions. We simulate XACT imaging of bone microstructures using digital phantoms generated from micro-CT images of real biological samples, showing that XACT imaging can provide high-resolution imaging of the mouse paw. Results of this study will greatly enhance the potential of XACT imaging in the evaluation of bone diseases for future clinical use.
X射线诱导声学计算机断层扫描(XACT)是一种很有前景的成像方式,它将高X射线吸收对比度与高分辨率超声波提供的三维传播优势相结合。本研究的目的是优化用于骨成像的三维XACT成像系统的配置。设计了280个峰值频率为10MHz的超声传感器分布在球面上,以优化三维容积成像能力。我们在包含各种X射线吸收系数的小鼠尺寸数字模型上对这种优化的XACT成像配置进行了理论计算和模拟。基于总变差的迭代算法已用于三维XACT图像重建。成像的空间分辨率在轴向和横向方向上估计约为[公式:见正文]。我们使用从真实生物样本的微型计算机断层扫描图像生成的数字模型模拟骨微结构的XACT成像,表明XACT成像可以提供小鼠爪子的高分辨率成像。本研究结果将大大提高XACT成像在未来临床评估骨疾病中的潜力。