Deacon A T, Anthony A G, Bhatia S N, Muller J P
Thorn EMI Research, Hayes, Middlesex, UK.
Med Inform (Lond). 1991 Apr-Jun;16(2):213-28. doi: 10.3109/14639239109012128.
This paper describes the configuration and evaluation of a CCD-based biostereometric system at the Department of Orthodontics, Kings College Dental Hospital, London. The system has been designed to allow rapid and accurate measurement of facial soft-tissue shape with a minimum of traditional photogrammetric training. This has been achieved by automatic camera calibration and stereo matching, performed on a Sun Microsystem 3/160 workstation. In summary, the characteristics of the system are: (a) non-contract three-dimensional (3D) measurement of soft-tissue; (b) de-skilled, requiring little or no photogrammetric training; (c) rapid data acquisition, combined with slower off-line processing; (d) processing of resulting 3D surface information to yield cross-sections; (e) surface measurement accurate to within 0.5 mm. Accuracy assessment was performed using a manual electromechanical non-contact measurement device with precision exceeding the requirement of the biostereometric system.
本文介绍了伦敦国王学院牙科学院正畸科基于电荷耦合器件(CCD)的生物立体测量系统的配置和评估。该系统旨在以最少的传统摄影测量培训实现对面部软组织形状的快速、准确测量。这是通过在Sun Microsystems 3/160工作站上进行自动相机校准和立体匹配来实现的。总之,该系统的特点如下:(a)对软组织进行非接触式三维(3D)测量;(b)无需专业技能,几乎不需要或根本不需要摄影测量培训;(c)快速数据采集,结合较慢的离线处理;(d)对所得3D表面信息进行处理以生成横截面;(e)表面测量精度在0.5毫米以内。使用精度超过生物立体测量系统要求的手动机电非接触测量设备进行了精度评估。