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X-Ray-Induced Acoustic Computed Tomography (XACT): Initial Experiment on Bone Sample

机译:X射线诱导的声学计算断层扫描(XACT):骨骼样品上的初始实验

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摘要

X-ray-induced acoustic computed tomography (XACT) is a unique hybrid imaging modality that combines high X-ray absorption contrast with high ultrasonic resolution. X-ray radiography and computerized tomography (CT) are currently the gold standards for 2-D and 3-D imaging of skeletal tissues though there are important properties of bone, such as elasticity and speed of sound (SOS), that these techniques cannot measure. Ultrasound is capable of measuring such properties though current clinical ultrasound scanners cannot be used to image the interior morphology of bones because they fail to address the complicated physics involved for exact image reconstruction; bone is heterogeneous and composed of layers of both cortical and trabecular bone, which violates assumptions in conventional ultrasound imaging of uniform SOS. XACT, in conjunction with the time-reversal algorithm, is capable of generating precise reconstructions, and by combining elements of both X-ray and ultrasound imaging, XACT is potentially capable of obtaining more information than any single of these techniques at low radiation dose. This article highlights X-ray-induced acoustic detection through linear scanning of an ultrasound transducer and the time-reversal algorithm to produce the first-ever XACT image of a bone sample. The results of this study should prove to enhance the potential of XACT imaging in the evaluation of bone diseases for future clinical use.
机译:X射线诱导的声学计算机断层扫描(XACT)是一种独特的混合成像模型,其将高X射线吸收对比度与高超声波分辨率相结合。 X射线放射线照相和计算机断层摄影(CT)目前是骨骼组织的2-D和3-D成像的金标准,尽管骨骼的重要属性,例如声音和声音速度(SOS),这些技术不能措施。超声波能够测量这些特性,尽管目前的临床超声扫描仪不能用于图像骨骼的内部形态,因为它们未能解决精确图像重建所涉及的复杂物理;骨是异质的,由皮质和小梁骨的层组成,其侵犯了统一的SOS的传统超声成像中的假设。结合时间反转算法的XACT能够产生精确的重建,并且通过组合X射线和超声成像的元件,Xact可能能够在低辐射剂量下获得比任何单个这些技术的更多信息。本文通过线性扫描来突出显示X射线引起的声学检测,以及产生骨骼样本的第一次XACT图像的时间反转算法。该研究的结果应证明,增强XACT成像在骨病评估中的潜力,以供未来的临床用途。

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