Department of Orthopedic Surgery, St. Vincent's Hospital, College of Medicine, The Catholic University of Korea, Suwon, Korea.
Clin Orthop Surg. 2020 Jun;12(2):232-237. doi: 10.4055/cios19100. Epub 2020 May 14.
The purpose of this study was to evaluate the radiologic results of total shoulder arthroplasty using computerized three-dimensional (3D) templating in preoperative planning.
Ten patients who underwent total shoulder arthroplasty using 3D templating preoperatively were enrolled in this study. A specialized computer program was used to reconstruct the 3D images of the shoulder from the computed tomographic images. The 3D images of various sizes of prostheses were used as the template in surgical planning of the shoulder arthroplasty. The size of the glenoid, humeral head, and stem measured in 3D templating were compared with those used in actual operation. Anatomical parameters, such as humeral head size, radius of curvature, and greater tuberosity to humeral head distance of the replaced shoulder, were measured and compared with those of the contralateral normal shoulder.
The agreement rates between the glenoid size, head size, head thickness, and stem size estimated preoperatively by 3D templating and those measured in operation were 100%, 100%, 100%, and 80%, respectively. The difference in humeral head size, radius of curvature, and greater tuberosity to humeral head distance between the replaced shoulder and contralateral shoulder was 1.31 mm, 0.87 mm, and 1.17 mm, respectively.
In total shoulder arthroplasty, 3D templating seems to enable accurate prediction of sizes of the prostheses to be inserted and thus replication of normal anatomy.
本研究旨在评估术前使用计算机化三维(3D)模板进行全肩关节置换的放射学结果。
本研究纳入了 10 例接受 3D 模板术前全肩关节置换的患者。使用专门的计算机程序从 CT 图像重建肩部的 3D 图像。各种尺寸的假体的 3D 图像被用作肩部关节置换手术规划的模板。在 3D 模板中测量的关节盂、肱骨头和柄的大小与实际手术中使用的大小进行了比较。测量并比较了置换肩的解剖学参数,如肱骨头大小、曲率半径和大结节到肱骨头的距离,与对侧正常肩的参数。
3D 模板术前预测的关节盂大小、头大小、头厚度和柄大小与术中测量的吻合率分别为 100%、100%、100%和 80%。置换肩与对侧肩的肱骨头大小、曲率半径和大结节到肱骨头的距离差异分别为 1.31mm、0.87mm 和 1.17mm。
在全肩关节置换中,3D 模板似乎能够准确预测要插入的假体尺寸,从而复制正常解剖结构。