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Analytic Design of Sparse Rectangular Arrays for 3D Medical Ultrasound Imaging

机译:3D医用超声成像稀疏矩形阵列的分析设计

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3D ultrasound imaging with 2D transducer arrays of large number of elements suffers from high hardware and computational complexity. In order to reduce the number of active channels, various sparse 2D array designs were presented. However, the proposed designs so far have either irregular element distribution that cannot guarantee uniformity among the scan lines or lack of analysis. In this study, a generalized sparse rectangular array (SRA) is presented, and a design rule that avoids common grating lobes of the transmit and receive SRA pairs is derived by analyzing the beam patterns. The continuous wave (CW) and pulsed wave responses of the SRA pairs are simulated to verify the proposed design rule.
机译:3D超声波成像,具有大量元素的2D换能器阵列,具有高硬件和计算复杂性。为了减少活动通道的数量,提出了各种稀疏的2D阵列设计。然而,到目前为止所提出的设计具有不规则的元素分布,不能保证扫描线之间的均匀性或缺乏分析。在该研究中,提出了广义稀疏矩形阵列(SRA),并且通过分析光束图案来导出避免发射和接收SRA对的公共光栅叶片的设计规则。 SRA对的连续波(CW)和脉冲波响应被模拟以验证所提出的设计规则。

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