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Model-based optical coherence elastography using acoustic radiation force

机译:使用声辐射力的基于模型的光学相干弹性成像

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Acoustic Radiation Force (ARF) stimulation is actively used in ultrasound elastography to estimate mechanical properties of tissue. Compared with ultrasound imaging, OCT provides advantage in both spatial resolution and signal-to-noise ratio. Therefore, a combination of ARF and OCT technologies can provide a unique opportunity to measure viscoelastic properties of tissue, especially when the use of high intensity radiation pressure is limited for safety reasons. In this presentation we discuss a newly developed theoretical model of the deformation of a layered viscoelastic medium in response to an acoustic radiation force of short duration. An acoustic impulse was considered as an axisymmetric force generated on the upper surface of the medium. An analytical solution of this problem was obtained using the Hankel transform in frequency domain. It was demonstrated that layers at different depths introduce different frequency responses. To verify the developed model, experiments were performed using tissue-simulating, inhomogeneous phantoms of varying mechanical properties. The Young's modulus of the phantoms was varied from 5 to 50 kPa. A single-element focused ultrasound transducer (3.5 MHz) was used to apply the radiation force with various durations on the surface of phantoms. Displacements on the phantom surface were measured using a phase-sensitive OCT at 25 kHz repetition frequency. The experimental results were in good agreement with the modeling results. Therefore, the proposed theoretical model can be used to reconstruct the mechanical properties of tissue based on ARF/OCT measurements.
机译:超声弹性成像中积极使用声辐射力(ARF)刺激来估计组织的机械性能。与超声成像相比,OCT在空间分辨率和信噪比方面均具有优势。因此,结合使用ARF和OCT技术可以提供测量组织粘弹性的独特机会,特别是在出于安全原因限制使用高强度辐射压力的情况下。在此演示文稿中,我们讨论了响应于持续时间短的声辐射力,层状粘弹性介质变形的最新开发的理论模型。声脉冲被认为是在介质上表面产生的轴对称力。使用频域中的汉克尔变换获得了该问题的解析解。结果表明,不同深度的层会引入不同的频率响应。为了验证开发的模型,使用了具有不同机械特性的组织模拟不均质幻像进行了实验。人体模型的杨氏模量在5至50 kPa之间变化。使用单元素聚焦超声换能器(3.5 MHz)在体模表面上施加各种持续时间的辐射力。使用相敏OCT在25 kHz重复频率下测量幻影表面上的位移。实验结果与建模结果吻合良好。因此,所提出的理论模型可用于基于ARF / OCT测量来重建组织的机械性能。

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