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Design of a Novel Zig-Zag 192+192 Row Column Addressed Array Transducer: A Simulation Study

机译:新型Zig-Zag 192 + 192行列寻址阵列传感器的设计:仿真研究

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Super resolution imaging (SRI) can benefit greatly from full 3D imaging to compensate for vessel structures moving out of the image plane. Row Column Addressed (RCA) arrays can provide such 3D imaging with low-complexity probe design. A RCA probe is being designed for a rat kidney with 192 + 192 elements to ensure low sidelobes and an imaging volume of 15×15×15 mm3The design space of such a transducer is investigated with this in mind. Capacitive micromachined ultrasonic transducer (CMUT) technology allows for new geometric shapes, including a near kerf-less zig-zag interwoven structure, which provides flexibility in the design process of new RCA. This work compares the image quality of a straight element RCA array with an RCA array with an interwoven zig-zag structure by simulations, to assess the image quality of a zigzag structured RCA. The Point Spread Function (PSF) showed symmetry in both the azimuth and elevation direction. Both the straight and interwoven design had a lateral Full Width Half Maximum (FWHM) of approximately 0.6 A, close to the ideal FWHM without apodization. The interwoven design showed a slight contrast loss over the straight desig, which was quantified with the Cystic Resolution (CR). The CR at 20 dB for the straight design was 1.3 A, compared to 1.4 A of the interwoven design. The two designs had comparable PSF metrics. The interwoven zig-zag structure is therefore a viable solution to meet the requirements of the rodent experiments and provides a new level of design flexibility for manufacturing RCA transducer arrays.
机译:超分辨率成像(SRI)可以从全3D成像中受益,以补偿从图像平面出现的血管结构。 Row Column寻址(RCA)阵列可以提供具有低复杂性探头设计的3D成像。 RCA探针专为具有192 + 192个元素的大鼠肾脏而设计,以确保低侧链和15×15×15mm的成像体积 3 考虑到这一点的这种换能器的设计空间。电容式微机械超声波换能器(CMUT)技术允许新的几何形状,包括近kerf Zig-zag交织结构,这在新RCA的设计过程中提供了灵活性。该工作通过模拟将具有RCA阵列的直接元件RCA阵列的图像质量与RCA阵列进行比较,以评估Z字形结构RCA的图像质量。点扩散函数(PSF)在方位角和高度方向上显示了对称性。直线和交织设计均具有约0.6a的横向全宽半最大(FWHM),靠近理想的FWHM而无需缩短。交织设计表现出通过囊性分辨率(Cr)量化的直线设计略微对比损失。直线设计的20 dB的CR为1.3A,与交织设计的1.4 A相比。这两种设计具有可比的PSF指标。因此,交织的Zig-ZAG结构是一种可行的解决方案,以满足啮齿动物实验的要求,并为制造RCA换能器阵列提供了新的设计灵活性。

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