移动线性阵列技术应用于活体生物识别的实验评价

A. Iula, M. De Santis, G. Caliano, M. Pappalardo
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引用次数: 6

摘要

在这项工作中,移动线性阵列技术已被用于执行不同人手的三维生态图像,以评估该技术的生物特征识别目的。该技术可以被认为是经典光学手几何技术的一种可能的进化和补充,因为它允许测量和分析手的内部区域。采用了具有高频(12兆赫)线性阵列的商用超声机。探头在与阵列正交的方向上移动,并且在每一步执行b扫描并存储以形成3D矩阵。分析比较不同使用者手掌的b、c扫描图像。结果表明,在分析区域(手掌皮肤下约10毫米),有几个解剖元素(包括手骨,弯曲肌腱,肌肉组织,血管)可以用于生物特征参数的测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental evaluation of the moving linear array technique applied to livescan biometrics
In this work the moving linear array technique has been used to perform 3D ecographic images of different human hands, in order to evaluate this technique to biometric recognition purposes. This technique could be considered as a possible evolution and complement of the classical optical hand geometry technique, as it allows the measurements and analysis of the internal hand region. A commercial echografic machine provided with a high frequency (12 MHz) linear array has been employed. The probe is moved in the directional orthogonal to the array and at each step a B-scan is performed and stored to form a 3D matrix. B-scan and C-scan images of the palm of the hand of different users were analysed and compared. The results have shown that, in the analysed region (about 10 mm under the palm skin), there are several anatomic elements (including hand bones, bending tendons, muscle tissue, blood vessels) that could be exploited for measurements of biometric parameters.
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