Suppr超能文献

机器人辅助全膝关节置换术前和术后的韧带张力和平衡 - 随施加力增加的动态变化。

Ligament Tension and Balance before and after Robotic-Assisted Total Knee Arthroplasty - Dynamic Changes with Increasing Applied Force.

机构信息

Department of Orthopaedic Surgery, University of California, Irvine, School of Medicine, Orange, California.

Corin, Raynham, Massachusetts.

出版信息

J Knee Surg. 2024 Jan;37(2):128-134. doi: 10.1055/s-0042-1760390. Epub 2023 Feb 2.

Abstract

The optimal force applied during ligament balancing in total knee arthroplasty (TKA) is not well understood. We quantified the effect of increasing distraction force on medial and lateral gaps throughout the range of knee motion, both prior to and after femoral resections in tibial-first gap-balancing TKA. Twenty-five consecutive knees in 21 patients underwent robotic-assisted TKA. The posterior cruciate ligament was resected, and the tibia was cut neutral to the mechanical axis. A digital ligament tensioning tool recorded gaps and applied equal mediolateral loads of 70 N (baseline), 90 N, and 110 N from 90 degrees to full extension. A gap-balancing algorithm planned the femoral implant position to achieve a balanced knee throughout flexion. After femoral resections, gap measurements were repeated under the same conditions. Paired -tests identified gap differences between load levels, medial/lateral compartments, and flexion angle. Gaps increased from 0 to 20 degrees in flexion, then remain consistent through 90 degrees of flexion. Baseline medial gap was significantly smaller than lateral gap throughout flexion ( <0.05). Increasing load had a larger effect on the lateral versus medial gaps ( <0.05) and on flexion versus extension gaps. Increasing distraction force resulted in non-linear and asymmetric gap changes mediolaterally and from flexion to extension. Digital ligament tensioning devices can give better understanding of the relationship between joint distraction, ligament tension, and knee stiffness throughout the range of flexion. This can aid in informed surgical decision making and optimal soft tissue tensioning during TKA.

摘要

在全膝关节置换术(TKA)中,韧带平衡时施加的最佳力尚不清楚。我们定量分析了在胫骨初次间隙平衡 TKA 中,增加分离力对膝关节运动全过程中内侧和外侧间隙的影响,包括股骨切除前后。21 名患者的 25 个连续膝关节接受了机器人辅助 TKA。切除后十字韧带,胫骨按机械轴切割中立位。数字韧带张力工具记录间隙,并在 90 度至完全伸展的范围内施加 70N(基线)、90N 和 110N 的相等内外侧负荷。间隙平衡算法规划了股骨植入物的位置,以实现整个膝关节屈伸过程中的平衡。在进行股骨切除后,在相同条件下重复间隙测量。配对检验确定了不同负荷水平、内外侧间隙和屈伸角度之间的间隙差异。间隙在膝关节屈曲 0 度到 20 度之间增加,然后在 90 度屈曲时保持一致。在整个膝关节屈伸过程中,基线内侧间隙明显小于外侧间隙(<0.05)。增加负荷对内侧和外侧间隙的影响更大(<0.05),以及在伸展和屈曲间隙之间的影响更大。增加分离力会导致间隙在内外侧以及从屈曲到伸展的非线性和不对称变化。数字韧带张力工具可以更好地了解关节分离、韧带张力和膝关节在整个屈伸范围内的僵硬之间的关系。这有助于在 TKA 中做出明智的手术决策和优化软组织张力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验