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20 MHz Forward-imaging Single-element Beam Steering with an Internal Rotating Variable-Angle Reflecting Surface: Wire phantom and Ex vivo pilot study

机译:20mHz的正向成像单元件波束控制与内部旋转变角反射面:电线幻象和体外试验研究

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摘要

Feasibility is demonstrated for a forward-imaging beam steering system involving a single-element 20 MHz angled-face acoustic transducer combined with an internal rotating variable-angle reflecting surface (VARS). Rotation of the VARS structure, for a fixed position of the transducer, generates a 2-D angular sector scan. If these VARS revolutions were to be accompanied by successive rotations of the single-element transducer, 3-D imaging would be achieved.In the design of this device, a single-element 20 MHz PMN-PT press-focused angled-face transducer is focused on the circle of midpoints of a micro-machined VARS within the distal end of an endoscope. The 2-D imaging system was tested in water bath experiments with phantom wire structures at a depth of 10 mm, and exhibited an axial resolution of 66 μm and a lateral resolution of 520 μm. Chirp coded excitation was used to enhance the signal-to-noise ratio, and to increase the depth of penetration. Images of an ex vivo cow eye were obtained. This VARS-based approach offers a novel forward-looking beam-steering method, which could be useful in intra-cavity imaging.
机译:演示了一种前向成像光束转向系统的可行性,该系统包括一个单元素20 MHz斜面声换能器以及一个内部旋转可变角度反射面(VARS)。对于换能器的固定位置,VARS结构的旋转会产生二维角度扇区扫描。如果这些VARS旋转伴随着单元件换能器的连续旋转,则可以实现3-D成像。在该设备的设计中,单元件20 MHz PMN-PT压力聚焦斜面换能器是聚焦于内窥镜远端内的微加工VARS的中点圆。在水浴实验中,使用10毫米深度的幻影线结构测试了二维成像系统,其轴向分辨率为66μm,横向分辨率为520μm。线性调频编码激励用于增强信噪比,并增加穿透深度。获得离体牛眼的图像。这种基于VARS的方法提供了一种新颖的前瞻性光束转向方法,该方法可用于腔内成像。

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