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Ultrasonically modulated x-ray phase contrast and vibration potential imaging methods

机译:超声调制X射线相位对比度和振动电位成像方法

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We show that the radiation pressure exerted by a beam of ultrasound can be used for contrast enhancement in high resolution x-ray imaging of tissue. Interfacial features of objects are highlighted as a result of both the displacement introduced by the ultrasound and the inherent sensitivity of x-ray phase contrast imaging to density variations. The potential of the method is demonstrated by imaging various tumor phantoms and tumors from mice. The directionality of the acoustic radiation force and its localization in space permits the imaging of ultrasound-selected tissue volumes. In a related effort we report progress on development of an imaging technique using and electrokinetic effect known as the ultrasonic vibration potential. The ultrasonic vibration potential refers to the voltage generated when ultrasound traverses a colloidal or ionic fluid. The theory of imaging based on the vibration potential is reviewed, and an expression given that describes the signal from an arbitrary object. The experimental apparatus consists of a pair of parallel plates connected to the irradiated body, a low noise preamplifier, a radio frequency lock-in amplifier, translation stages for the ultrasonic transducer that generates the ultrasound, and a computer for data storage and image formation. Experiments are reported where bursts of ultrasound are directed onto colloidal silica objects placed within inert bodies.
机译:我们表明,通过超声波施加的辐射压力可用于组织的高分辨率X射线成像中的对比增强。由于超声波引入的位移和X射线相位对比度成像与密度变化的固有灵敏度来说,物体的界面特征被突出显示。通过从小鼠中成像各种肿瘤偶像和肿瘤来证明该方法的潜力。声辐射力的方向性及其在空间中的定位允许超声选择的组织体积的成像。在相关的努力中,我们在使用和电动效果称为超声波振动潜力的电动效果来报告开发成像技术的进展。超声波振动电位是指超声波穿过胶体或离子液时产生的电压。综述了基于振动电位的成像理论,并给出了从任意对象的信号的表达式。实验装置由连接到照射体的一对平行板组成,低噪声前置放大器,射频锁定放大器,用于产生超声波的超声换能器的平移级,以及用于数据存储和图像形成的计算机。报告了实验,其中超声波突发被引导到放置在惰性体内的胶体二氧化硅物体上。

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