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使用带有优化加压系统的新型钢板进行内侧闭合楔形股骨远端截骨术。

Medial Closed Wedge Distal Femoral Osteotomy Using a Novel Plate With an Optimal Compression System.

作者信息

Nakamura Ryuichi, Akiyama Takenori, Takeuchi Ryohei, Nakayama Hiroshi, Kondo Eiji

机构信息

Joint Preservation and Sports Orthopaedic Center, Harue Hospital, Sakai.

Akiyama Clinic, Fukuoka.

出版信息

Arthrosc Tech. 2021 May 7;10(6):e1497-e1504. doi: 10.1016/j.eats.2021.02.016. eCollection 2021 Jun.

Abstract

Medial closed wedge distal femoral osteotomy (MCWDFO) has been widely performed for lateral-compartment osteoarthritis since the development of a biplanar osteotomy technique using existing MCWDFO-specific plates. To further improve this system and the technique, we have developed a newly designed MCWDFO plate (TriS-MDFO; Olympus Terumo Biomaterials). The improved shape of the plate consists of a larger head-shaft angle to fit the distal femur after MCWDFO, more distally oriented distal screws to enable longer screw insertion, and a diamond-shaped plate head to avoid interference with the medial patellofemoral ligament. Technically, to overcome the difficulty in inserting proximal screws through the vastus medialis muscle, a cannulated screw system was employed. This system can prevent difficulties in removing the screw due to cross-threading when plate removal is required. Furthermore, we designed a novel compression hook device with a bulb-shaped head to hook on a screw hole to apply a compressive force to the osteotomized site. On the plate side, a characteristic 1.5 mm-thickness stopper is installed to prevent slippage of the hook device. This optimal compression system can minimize the risk of lateral hinge fracture during the compression procedure. These improvements in the TriS-MDFO may increase the ease and safety of MCWDFO.

摘要

自从采用现有的特定于内侧闭合楔形股骨远端截骨术(MCWDFO)的双平面截骨技术以来,内侧闭合楔形股骨远端截骨术已被广泛用于治疗外侧间室骨关节炎。为了进一步改进该系统和技术,我们开发了一种新设计的MCWDFO钢板(TriS-MDFO;奥林巴斯泰尔茂生物材料公司)。该钢板改进后的形状包括更大的头-干角,以适应MCWDFO术后的股骨远端;更向远端定向的远端螺钉,以便能够插入更长的螺钉;以及菱形的钢板头部,以避免干扰内侧髌股韧带。在技术方面,为了克服通过股内侧肌插入近端螺钉的困难,采用了空心螺钉系统。当需要取出钢板时,该系统可以防止因螺纹交叉而导致的螺钉取出困难。此外,我们设计了一种新型的带有球形头部的加压钩装置,以钩住螺孔,从而对截骨部位施加压缩力。在钢板一侧,安装了一个1.5毫米厚的特殊止动器,以防止钩装置滑动。这种优化的加压系统可以将加压过程中外侧铰链骨折的风险降至最低。TriS-MDFO的这些改进可能会提高MCWDFO的操作便利性和安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a573/8252853/e29f71510588/gr1.jpg

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