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Radiation force imaging of viscoelastic properties with reduced artifacts

机译:减少伪影的粘弹性的辐射力成像

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摘要

It is well-known that changes in the mechanical properties of tissues are correlated with the presence of disease. In the eye, for example, the vitreous body undergoes dramatic changes in mechanical properties during age-related degradation. These changes may play a significant role in the formation of retinal detachment or other vitreoretinal diseases. We previously presented a noninvasive method called kinetic acoustic vitreoretinal examination (KAVE), which may be used to detect these mechanical changes. KAVE uses acoustic radiation force as a means to produce small, localized displacements within the tissues. Returning echoes are processed using ultrasonic motion tracking so that the response of the tissue to the induced force can be evaluated. By repeating this process at a number of locations, images depicting viscoelastic properties of tissues can be formed. Through the combination of appropriate mechanical modeling and signal processing, we are able to generate images of parameters such as relative mass, relative elasticity, and relative viscosity. These parameters are called relative because they depend on the force applied, which is typically unknown. In this paper, we present new force-free images depicting the time constant /spl tau/, the damping ratio /spl xi/, and the natural frequency /spl omega/ of the phantom material. These images are significant in that they lack the artifacts common in the relative property images.
机译:众所周知,组织机械性能的变化与疾病的存在有关。例如,在眼睛中,玻璃体在与年龄相关的退化过程中机械性能发生巨大变化。这些变化可能在视网膜脱离或其他玻璃体视网膜疾病的形成中起重要作用。我们之前提出了一种称为动态声学玻璃体视网膜检查(KAVE)的非侵入性方法,该方法可用于检测这些机械变化。 KAVE使用声辐射力作为在组织内产生小的局部位移的手段。返回的回声使用超声波运动跟踪进行处理,以便可以评估组织对感应力的响应。通过在多个位置重复此过程,可以形成描述组织粘弹性的图像。通过适当的机械建模和信号处理的组合,我们可以生成参数图像,例如相对质量,相对弹性和相对粘度。这些参数之所以称为相对参数,是因为它们取决于所施加的力,通常这是未知的。在本文中,我们提供了新的无力图像,这些图像描述了幻象材料的时间常数/ spl tau /,阻尼比/ spl xi /和固有频率/ splω/。这些图像很重要,因为它们缺少相对属性图像中常见的伪像。

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