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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A capacitive micromachined ultrasonic transducer probe for assessment of cortical bone
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A capacitive micromachined ultrasonic transducer probe for assessment of cortical bone

机译:电容微加工超声换能器探头,用于评估皮质骨

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A wide range of ultrasound methods has been proposed to assess the mechanical strength of bone. The axial transmission technique, which consists of measuring guided elastic modes through the cortical shell of long bones such as the radius or tibia, has recently emerged as one of the most promising approaches of all bone exploration methods. Determination of dispersion curves of guided waves is therefore of prime interest because they provide a large set of input data required to perform inverse process, and hence to evaluate bone properties (elastic and geometric). The cortical thickness of long bones ranges from approximately 1 to 7 mm, resulting in wide inter-individual variability in the guided wave response. This variability can be overcome by using a single probe able to operate with a tunable central frequency, typically within the 100 kHz to 2 MHz frequency range. However, there are certain limitations in the design of low-frequency arrays using traditional PZT technology; these limitations have triggered active research to find alternative solutions. Capacitive micromachined ultrasonic transducers (cMUTs) have the potential to overcome these limitations and to improve axial transmission measurement significantly. The objective of this study was to design and construct a new cMUT-based axial transmission probe and to validate the approach. We report all the steps followed to construct such a prototype, from the description of the fabrication of the cMUT (based on a surface micromachining process) through probe packaging. The fabricated device was carefully characterized using both electrical and optical measurements to check the homogeneity of the device, first from cMUT to cMUT and then from element to element. Finally, axial transmission measurements carried out with the prototype cMUT probe are shown and compared with results obtained with a PZT-based array.
机译:已经提出了各种各样的超声方法来评估骨骼的机械强度。轴向传输技术包括测量穿过长骨的皮质壳(例如radius骨或胫骨)的引导弹性模式,最近已成为所有骨骼探查方法中最有希望的方法之一。因此,确定导波的色散曲线非常重要,因为它们提供了执行逆过程并因此评估骨骼属性(弹性和几何形状)所需的大量输入数据。长骨的皮质厚度范围约为1至7毫米,从而导致导波响应的个体间差异很大。通过使用能够以可调的中心频率(通常在100 kHz至2 MHz频率范围内)工作的单个探头可以克服这种可变性。但是,使用传统的PZT技术设计低频阵列存在一定的局限性。这些局限性引发了积极的研究,以寻找替代解决方案。电容式微加工超声换能器(cMUT)有潜力克服这些局限性并显着改善轴向传输测量。这项研究的目的是设计和构造一个新的基于cMUT的轴向传输探头并验证该方法。我们报告了从构造cMUT(基于表面微加工工艺)到探针封装的描述,构建这种原型所遵循的所有步骤。首先使用cMUT到cMUT,然后从元件到元件,使用电学和光学测量对制造的设备进行仔细表征,以检查设备的均匀性。最后,显示了使用原型cMUT探针进行的轴向透射测量,并将其与基于PZT的阵列获得的结果进行了比较。

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