Kärrholm Johan, Gill Richie H S, Valstar Edward R
Department of Orthopaedics, Sahlgrenska University Hospital, Göteborg, Sweden.
Clin Orthop Relat Res. 2006 Jul;448:10-21. doi: 10.1097/01.blo.0000224001.95141.fe.
Roentgen stereophotogrammetry allows one to localize the position of an object in space using roentgen rays. For orthopaedic purposes it was developed 35 years ago by Göran Selvik, and since that time many investigators have refined the radiostereometric calculations and evaluative software. Many uses and mathematical algorithms have been developed, and advancements in computer programs and digital radiography continue to expand its capabilities. Despite these advances, improvements in the technical accuracy and type of kinematic analyses possible have been relatively modest. However, radiostereometric analysis is now easier and less time consuming to use, with a resolution in clinical practice almost equal to what could only previously be obtained under ideal laboratory conditions. The ability to measure skeletal and implant movements with high resolution in vivo images was an important progressive step for the orthopaedic community. Radiostereometric analysis has helped develop new fields in clinical orthopaedic research and continues to improve advancements in orthopaedic health care.
X射线立体摄影测量法可利用X射线确定物体在空间中的位置。35年前,戈兰·塞尔维克将其用于骨科目的,自那时起,许多研究人员对放射立体测量计算和评估软件进行了改进。现已开发出多种用途和数学算法,计算机程序和数字射线照相技术的进步不断拓展其功能。尽管有这些进展,但在技术精度和可行的运动学分析类型方面的改进相对较小。然而,放射立体测量分析现在使用起来更简便、耗时更少,临床实践中的分辨率几乎等同于以前只能在理想实验室条件下获得的分辨率。能够在体内图像中以高分辨率测量骨骼和植入物的运动,这对骨科领域来说是重要的进步。放射立体测量分析有助于开拓临床骨科研究的新领域,并不断推动骨科医疗保健的进步。