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Mitigation of off-axis specular reflection artifacts in diagnostic bone imaging with medical ultrasound using mechanically scanned piston transducers

机译:使用机械扫描活塞换能力减轻医用超声诊断骨成像中的轴颈镜面反射伪影

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Medical ultrasound is a potentially superior alternative to X-ray for bone imaging due to its portability, low cost, and avoidance of ionizing radiation. However, bone imaging, using conventional medical ultrasound systems, exhibits a higher level of artifact when compared with soft tissue imaging, and therefore, clinical efficacy is limited. Simulations in FIELD II were conducted to assess the effects of transducer geometry, imaging parameters, and orientations of specular reflecting surfaces on image artifact. The simulation model was experimentally validated using an Ultrasonix Sonix RP scanner with specular surfaces constructed from fused sheets of PMMA. Simulation and experimental results demonstrated that linear transducer arrays exhibit an increase in artifact signal at higher frequencies where the grating lobe angle, relative to main lobe angle, was reduced and when grating lobes were perpendicularly incident upon off-axis surfaces. The artifact signal was reduced with the linear array geometry when off-axis surfaces were simulated as diffusive scatterers rather than specular reflectors. The simulation model was validated experimentally achieving a correlation coefficient of 0.97 between experimental and simulated on-axis to off-axis peak reflection contrast. This work indicates that off-axis reflections are a major source of ultrasound image artifact particularly in environments comprising specular reflecting (i.e. bone or bone-like) objects. Transducer geometries with reduced sensitivity to off-axis surface reflections, such as a piston transducer geometry, yield reductions in image artifact.
机译:医用超声是由于其便携性,低成本和避免电离辐射而导致骨骼成像的X射线潜在的替代方案。然而,使用常规医用超声系统的骨成像在与软组织成像相比时表现出更高水平的伪像,因此,临床疗效受到限制。进行了田间II的模拟,以评估换能器几何形状,成像参数和镜面上反射表面对图像伪影的影响。使用Ultrasonix SONIX RP扫描仪通过用由熔合的PMMA构造的镜面进行实验验证,模拟模型。模拟和实验结果表明,线性换能器阵列在较高频率下表现出较高频率的伪像信号的增加,其中相对于主瓣角度,并且当光栅叶片垂直入射到轴上表面时。当偏离轴表面被模拟为漫射散射器而不是镜面反射器时,随着线性阵列几何形状减小了伪影信号。通过实验验证模拟模型在实验和模拟轴上与轴外峰值反射对比之间的相关系数0.97之间的相关系数。该工作表明,轴轴反射是超声图像伪影的主要来源,特别是在包括镜面反射(即骨骼或骨状)物体的环境中。换能器几何形状,对轴外表面反射的敏感性降低,例如活塞换能器几何形状,在图像伪影中产生减少。

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