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Evaluation of CMUT annular arrays for side-looking IVUS

机译:侧视IVUS的CMUT环形阵列评估

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Side-looking (SL) IVUS probes are extensively used for management of cardiovascular diseases. Currently SL-IVUS imaging probes use either a single rotating transducer element or solid-state arrays. Probes with single rotating piezoelectric transducer have simple front-end, but have fixed focused operation, and suffers from motion artifacts. Solid-state SL-IVUS imaging probes use piezoelectric transducer arrays and electronic beam-forming. Synthetic phased array processing of signals detected with small-sized elements in these arrays limits the SNR achievable with these probes. In this study, we explore a new SL-IVUS probe architecture employing rotating phased annular CMUT arrays. We tested and compared imaging performance of the existing and proposed probe configurations through simulated point spread functions. We also two fabricated sample annular array designs operating at 20-MHz and 50-MHz. Our experimental measurements on the 20-MHz array in oil shows 105% fractional bandwidth. The 50-MHz array with parylene coating shows approximately 40% fractional bandwidth measured in water. We also present imaging results acquired from wire-targets to test the experimental point-spread functions.
机译:侧面(SL)IVUS探针广泛用于管理心血管疾病。目前SL-IVUS成像探头使用单个旋转换能器元件或固态阵列。具有单旋转压电换能器的探头具有简单的前端,但具有固定的聚焦操作,并且遭受运动伪影。固态SL-IVUS成像探头使用压电换能器阵列和电子束形成。这些阵列中的小型元件检测的信号的合成分阶段阵列处理限制了与这些探针可实现的SNR。在这项研究中,我们探讨了采用旋转相位的环形CMUT阵列的新的SL-IVUS探测架构。我们通过模拟点传播功能测试和比较现有的探测配置的成像性能和比较了现有的探测配置。我们还在20-MHz和50-MHz上运行的两个制造的样品环形阵列设计。我们对油的20MHz阵列的实验测量显示出105%的分数带宽。具有二甲苯涂层的50MHz阵列显示出在水中测量的大约40%的分数带宽。我们还提出了从电线靶中获得的成像结果以测试实验点传播功能。

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