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A prototype of a 500 kHz ultrasonic matricial device: beam scanner. Application to in-vivo heel bone quantitative characterization

机译:500 kHz超声波工艺装置的原型:梁扫描仪。 应用于体内脚跟骨数量表征

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摘要

In the context of a European Space Agency Technical Research Program, focused on bone activities in micro gravity environment, Matra Marconi Space, Vermon, LIP, ULTRASONS TECHNOLOGIES and GIP Ultrasons have been asked to develop a prototype of an ultrasonic 2D array bone densitometer. This transmission device is composed of two matrices of 24/spl times/24 elements and is functioning at 500 kHz central frequency. The test objects are scanned over a 60/spl times/60 mm/sup 2/ with an active aperture of 30 mm diameter. After the acquisition and reconstruction step, the signals are processed to extract two parametric images of attenuation and celerity. The first experiments, reported in this paper have been performed in immersion. Parametric images of in-vitro phantoms and in-vivo heel bone are presented.
机译:在欧洲航天局技术研究计划的背景下,专注于微重力环境中的骨骼活动,已被要求制定超声波2D阵列骨密度计的原型。 该传输设备由两个24 / SPL次/ 24个元素的两个矩阵组成,并且在500kHz中央频率下运行。 通过60 / SPL次/ 60 mm / sup 2 /具有30mm直径的主动孔径扫描测试对象。 在获取和重建步骤之后,处理信号以提取两个衰减和enerity的两个参数图像。 本文报道的第一个实验已在浸入中进行。 提出了体外幽灵和体内鞋跟骨的参数图像。

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