Narayanasamy Ganesh, Fowlkes J Brian, Kripfgans Oliver D, Jacobson Jon A, De Maeseneer Michel, Schmitt Rainer M, Carson Paul L
Department of Radiology, University of Michigan, Ann Arbor, MI, USA.
Ultrasound Med Biol. 2008 Mar;34(3):392-9. doi: 10.1016/j.ultrasmedbio.2007.08.003. Epub 2007 Nov 12.
It was hypothesized that the use of internal finger structure as imaged using commercially available ultrasound (US) scanners could act as a supplement to standard methods of biometric identification, as well as a means of assessing physiological and cardiovascular status. Anatomical structures in the finger including bone contour, tendon and features along the interphalangeal joint were investigated as potential biometric identifiers. Thirty-six pairs of three-dimensional (3D) gray-scale images of second to fourth finger (index, middle and ring) data taken from 20 individuals were spatially registered using MIAMI-Fuse software developed at our institution and also visually matched by four readers. The image-based registration met the criteria for matching successfully in 14 out of 15 image pairs on the same individual and did not meet criteria for matching in any of the 12 image pairs from different subjects, providing a sensitivity and specificity of 0.93 and 1.00, respectively. Visual matching of all image pairs by four readers yielded 96% successful match. Power Doppler imaging was performed to calculate the change in color pixel density due to physical exercise as a surrogate of stress level and to provide basic physiological information. (E-mail: gnarayan@umich.edu).
据推测,利用商用超声(US)扫描仪成像的手指内部结构可作为生物特征识别标准方法的补充,以及评估生理和心血管状况的一种手段。对手指中的解剖结构,包括骨轮廓、肌腱以及指间关节沿线的特征进行了研究,以确定其作为潜在生物特征识别标识的可能性。从20名个体获取的第二至第四指(食指、中指和无名指)的36对三维(3D)灰度图像数据,使用我们机构开发的MIAMI-Fuse软件进行了空间配准,并且由四名读者进行了视觉匹配。基于图像的配准在同一受试者的15对图像中有14对成功符合匹配标准,而在来自不同受试者的12对图像中均未符合匹配标准,灵敏度和特异性分别为0.93和1.00。四名读者对所有图像对进行视觉匹配的成功率为96%。进行了能量多普勒成像,以计算因体育锻炼导致的彩色像素密度变化,作为应激水平的替代指标,并提供基本生理信息。(电子邮件:gnarayan@umich.edu)