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Design of 15 MHz concave array transducers for ophthalmic imaging

机译:用于眼科成像的15 MHz凹面阵列换能器的设计

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15 MHz concave array transducers for effective high frequency ultrasound ophthalmic imaging are proposed and designed in this paper. The concave type, fitting well to the spherical shape of the eye, can keep off refraction and reflection from the anterior segment of the eye, especially the cornea and lens. A 15 mm radius of curvature and a 1.44λ pitch with 128 elements in the array design were chosen for this concave array. Also, geometric focus of 30 mm and a view angle of 72.3° at the center of eyeball were decided, allowing the imaging area to cover the retinal region of interest in the posterior segment. Based on the Field II simulation, a −6 dB lateral beam width was 200 µm and the −3 dB depth of focus was 6.6 mm at the depth of 29.1 mm. In the design, 1–3 composite of PMN-PT was selected due to its high coupling coefficient. From KLM single element modeling, it was learned that the designed concave array can provide the −6 dB fractional bandwidth of 81.8% and the − 20 dB pulse length of 0.127 µm. From those results, the concave array transducer is expected to be a possible alternative to the conventional arrays for imaging the posterior segment of the eye.
机译:本文提出并设计了15 MHz凹面阵列换能器,用于有效的高频超声眼科成像。凹型非常适合眼睛的球形,可以防止眼睛前段(尤其是角膜和晶状体)发生折射和反射。对于该凹面阵列,选择了阵列设计中15毫米的曲率半径和1.44λ的间距以及128个元件。此外,确定了30 mm的几何焦点和眼球中心的72.3°视角,从而使成像区域覆盖了后段中感兴趣的视网膜区域。根据Field II模拟,在29.1 mm的深度处,-6 dB的横向光束宽度为200 µm,-3 dB的聚焦深度为6.6 mm。在设计中,由于其高耦合系数,因此选择了1-3种PMN-PT复合材料。通过KLM单元素建模,可以了解到,设计的凹面阵列可以提供-6 dB的分数带宽为81.8%,以及-20 dB的脉冲长度为0.127 µm。根据这些结果,凹面阵列换能器有望成为常规阵列的可能替代方案,用于成像眼后段。

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