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Optimized shear wave generation using hybrid beamforming methods

机译:使用混合波束成形方法优化剪切波生成

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Elasticity imaging is a medical imaging modality that measures tissue elasticity as an aid in the diagnosis of certain diseases. Shear wave-based methods have been developed to perform elasticity measurements in soft tissue. These methods often use the radiation force mechanism of focused ultrasound to induce shear waves in soft tissue such as liver, kidney, breast, thyroid and skeletal muscle. The efficiency of the ultrasound beam in producing broadband extended shear waves in soft tissue is very important to the widespread use of this modality. Hybrid beamforming combines two types of focusing, conventional spherical focusing and axicon focusing, to produce a beam for generating a shear wave that has increased depth-of-field (DOF) so that measurements can be made with a shear wave with a consistent wave front. Spherical focusing is used in many applications to achieve high lateral resolution, but has low DOF. Axicon focusing, with a cone-shaped transducer, can provide good lateral resolution with large DOF. We describe our linear aperture design and beam optimization performed using angular spectrum simulations. We performed a large parametric simulation study in which we varied the focal depth for the spherical focusing portion of the aperture, the numbers of elements devoted to the spherical and axicon focusing portions of the aperture and the opening angle used for axicon focusing. The hybrid beamforming method was experimentally tested in two phantoms, and shear wave speed measurement accuracy and DOF for each hybrid beam were evaluated. We compared our results with those for shear waves generated using only spherical focusing. The results of this study indicate that hybrid beamforming is capable of producing a beam with increased DOF over which accurate shear wave speed measurements can be made for different-size apertures and at different focal depths.
机译:弹性成像是一种医学成像方法,可测量组织弹性以帮助诊断某些疾病。已经开发了基于剪切波的方法来在软组织中执行弹性测量。这些方法通常使用聚焦超声的辐射力机制在诸如肝脏,肾脏,乳房,甲状腺和骨骼肌等软组织中诱发剪切波。超声波束在软组织中产生宽带扩展剪切波的效率对这种方式的广泛使用非常重要。混合波束成形将传统的球形聚焦和轴锥聚焦两种聚焦方式结合在一起,以产生用于产生剪切波的光束,该剪切波具有更大的景深(DOF),因此可以使用波前一致的剪切波进行测量。球形聚焦用于许多应用中以获得高横向分辨率,但自由度低。具有锥形换能器的Axicon聚焦可以在大自由度下提供良好的横向分辨率。我们描述了使用角谱模拟进行的线性孔径设计和光束优化。我们进行了一项大型参数模拟研究,其中我们更改了光圈的球形聚焦部分的焦深,光圈的球形和轴锥聚焦部分的元素数量以及用于轴锥聚焦的张开角度。在两个模型中对混合波束形成方法进行了实验测试,并评估了每个混合波束的剪切波速度测量精度和自由度。我们将我们的结果与仅使用球形聚焦产生的剪切波的结果进行了比较。这项研究的结果表明,混合波束成形能够产生具有增加的自由度的光束,在该光束上可以针对不同尺寸的孔径和不同的焦深进行精确的剪切波速度测量。

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