A theoretical investigation of ultrasonic transducer design for measurement of skin

Y. Estanbouli, G. Hayward, J. Barbenel
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引用次数: 1

Abstract

Despite significant advances in ultrasonic instrumentation, accurate and repeatable measurements of skin structure and dimensions remain problematic. Skin structure is complicated and structural boundaries are non-planar and may be diffuse, inhibiting the application of inversion methods for skin thickness measurement. Coupling a transducer to the skin surface with water or aqueous gel can produce significant artefacts in thickness measurement, which may be prevented by using a rubber dry contact. This work describes a theoretical investigation of these problems, using the PZFlex finite element code as a virtual prototyping tool. Simulations show that non-planar and diffuse boundaries have significant effect on the output backscattered signals; and using of low loss rubber dry contact is possible but further work is required to determine the properties and optimum shape of the rubber interface.
皮肤测量用超声换能器设计的理论研究
尽管超声仪器取得了重大进展,但皮肤结构和尺寸的精确和可重复测量仍然存在问题。蒙皮结构复杂,结构边界非平面且可能呈弥漫性,限制了蒙皮厚度反演方法的应用。用水或含水凝胶将换能器耦合到皮肤表面可以在厚度测量中产生明显的伪影,这可以通过使用橡胶干接点来防止。这项工作描述了这些问题的理论研究,使用PZFlex有限元代码作为虚拟样机工具。仿真结果表明,非平面边界和漫射边界对输出后向散射信号有显著影响;使用低损耗橡胶干接点是可行的,但需要进一步确定橡胶界面的性能和最佳形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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