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首页> 外文期刊>Ophthalmology >High-frequency ultrasonic imaging of the anterior segment using an annular array transducer.
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High-frequency ultrasonic imaging of the anterior segment using an annular array transducer.

机译:使用环形阵列换能器对前节进行高频超声成像。

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OBJECTIVE: Very high-frequency ultrasound (VHFU; >35 megahertz [MHz]) allows imaging of anterior segment structures of the eye with a resolution of less than 40 microm. The low focal ratio of VHFU transducers, however, results in a depth of field (DOF) of less than 1 mm. The aim was to develop a high-frequency annular array transducer for ocular imaging with improved DOF, sensitivity, and resolution compared with conventional transducers. DESIGN: Experimental study. PARTICIPANTS: Cadaver eyes, ex vivo cow eyes, in vivo rabbit eyes. METHODS: A spherically curved annular array ultrasound transducer was fabricated. The array consisted of 5 concentric rings of equal area, had an overall aperture of 6 mm, and a geometric focus of 12 mm. The nominal center frequency of all array elements was 40 MHz. An experimental system was designed in which a single array element was pulsed and echo data were recorded from all elements. By sequentially pulsing each element, echo data were acquired for all 25 transmit-and-receive annuli combinations. The echo data then were focused synthetically and composite images were produced. Transducer operation was tested by scanning a test object consisting of a series of 25-microm diameter wires spaced at increasing range from the transducer. Imaging capabilities of the annular array were demonstrated in ex vivo bovine, in vivo rabbit, and human cadaver eyes. MAIN OUTCOME MEASURES: Depth of field, resolution, and sensitivity. RESULTS: The wire scans verified the operation of the array and demonstrated a 6.0-mm DOF, compared with the 1.0-mm DOF of a conventional single-element transducer of comparable frequency, aperture, and focal length. B-mode images of ex vivo bovine, in vivo rabbit, and cadaver eyes showed that although the single-element transducer had high sensitivity and resolution within 1 to 2 mm of its focus, the array with synthetic focusing maintained this quality over a 6-mm DOF. CONCLUSIONS: An annular array for high-resolution ocular imaging has been demonstrated. This technology offers improved DOF, sensitivity, and lateral resolution compared with single-element fixed focus transducers currently used for VHFU imaging of the eye.
机译:目的:超高频超声(VHFU;> 35兆赫[MHz])可以对眼前节结构成像,分辨率小于40微米。但是,VHFU换能器的低聚焦比导致景深(DOF)小于1毫米。目的是开发一种用于眼部成像的高频环形阵列换能器,与传统换能器相比具有更高的自由度,灵敏度和分辨率。设计:实验研究。参与者:尸体眼,离体牛眼,体内兔眼。方法:制作了球面弯曲的环形阵列超声换能器。该阵列由5个相等面积的同心环组成,总孔径为6 mm,几何焦点为12 mm。所有阵列元件的标称中心频率为40 MHz。设计了一个实验系统,在该系统中,对单个数组元素进行脉冲处理,并记录所有元素的回波数据。通过依次对每个元素进行脉冲处理,获取了所有25个发射和接收环形组合的回波数据。然后将回波数据综合聚焦并生成合成图像。通过扫描测试对象来测试换能器的运行情况,该测试对象由一系列直径为25微米的导线组成,这些导线与换能器的间距不断增大。环形阵列的成像功能已在离体牛,体内兔和人尸眼中得到证明。主要观察指标:景深,分辨率和灵敏度。结果:导线扫描验证了阵列的运行情况,并证明了6.0毫米自由度,而频率,孔径和焦距相当的传统单元件换能器的1.0毫米自由度相比。离体牛,体内兔和尸体眼睛的B型图像显示,尽管单元素换能器在其聚焦的1至2毫米范围内具有高灵敏度和分辨率,但具有合成聚焦的阵列在6-毫米自由度。结论:已经证明了用于高分辨率眼成像的环形阵列。与目前用于眼睛的VHFU成像的单元素固定焦点传感器相比,该技术可提供更好的DOF,灵敏度和横向分辨率。

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