首页> 外文期刊>The journal of knee surgery >Computer-assisted surgery patterns of ligamentous deformity of the knee: a clinical and cadaveric study.
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Computer-assisted surgery patterns of ligamentous deformity of the knee: a clinical and cadaveric study.

机译:膝关节韧带畸形的计算机辅助手术模式:临床和尸体研究。

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Knee malalignment during total knee arthroplasty (TKA) is commonly classified as either varus or valgus on the basis of a standing anteroposterior radiograph. Computer-assisted surgery (CAS) navigation TKA provides precise dynamic evaluation of knee alignment throughout the full range of motion (FROM). The goal of this study was to classify patterns of CAS-generated knee deformity curves that match specific soft tissue contracture combinations. This can then be applied as an algorithm for soft tissue balancing on the basis of the preoperative knee deformity curve. Computer navigation-generated graphs from 65 consecutive TKA procedures performed by a single surgeon were analyzed. A stress-strain curve of the coronal alignment of the knee was recorded throughout FROM before bony resection. All graphs were classified into groups according to their pattern. Cadaveric knee models were then used to test the correlation between isolated and combined ligamentous contractures and identified CAS deformity curves. An analysis of the intraoperative knee alignment graphs revealed four distinct patterns of coronal deformity on the basis of intraoperative data: 13% diagonal, 18.5% C-shaped, 43.5% comma shaped, and 25% S-shaped. Each represents the change in varus and valgus alignment during FROM. All patterns were reproduced with cadaveric knees by recreating specific contracture constellations. A tight posterior capsule gave an S-shaped curve, a tight lateral collateral ligament gave a C-shaped curve, tight medial collateral ligament gave a diagonal curve, and a tight posterior lateral corner gave a comma-shaped curve. Release of the specific contractures resulted in correction of all patterns of deformity as measured by CAS. We propose a new classification system for coronal plane knee deformity throughout FROM. This system intends to match individual and combined soft tissue pathological contractures to specific stress-strain curves obtained through routine knee CAS preparation. This classification system may provide surgeons with a general guide for soft tissue balancing during computer-navigated TKA. Thieme Medical Publishers 333 Seventh Avenue, New York, NY 10001, USA.
机译:全膝关节置换术(TKA)期间的膝关节畸形通常根据站立前后的X线照片分为内翻或外翻。计算机辅助手术(CAS)导航TKA可在整个运动范围(FROM)内对膝关节的对准进行精确的动态评估。这项研究的目的是对与特定软组织挛缩组合相匹配的CAS生成的膝盖畸形曲线的模式进行分类。然后可以将其用作基于术前膝盖变形曲线的软组织平衡算法。分析了由单名外科医生进行的65次连续TKA程序生成的计算机导航图。整个FROM记录了骨切除之前膝盖的冠状线取向的应力-应变曲线。所有图形均根据其模式分类。然后使用尸体膝盖模型测试孤立的和合并的韧带挛缩与已确定的CAS畸形曲线之间的相关性。术中膝关节对准图的分析显示,根据术中数据,冠状畸形有四种不同的模式:对角线13%,C型18.5%,逗号43.5%和S型25%。每个代表在FROM期间内翻和外翻对准的变化。通过重建特定的挛缩星座,用尸体膝盖复制所有图案。紧密的后囊形成S形曲线,紧密的外侧副韧带呈C形曲线,紧密的内侧副韧带呈对角线弯曲,紧密的后外侧角呈逗号形曲线。特定挛缩的释放导致通过CAS测量的所有畸形矫正。我们提出了一个新的分类系统,用于整个FROM的冠状平面膝盖畸形。该系统旨在使单个和组合的软组织病理性挛缩与通过常规膝盖CAS准备获得的特定应力-应变曲线相匹配。该分类系统可以为外科医生提供计算机导航TKA期间软组织平衡的一般指南。美国纽约第七大街333号Thieme Medical Publishers,美国纽约。

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