Suppr超能文献

半月板切除术后累及股骨内外侧髁的进行性全层局灶性软骨缺损的后果:一项使用山羊模型的生物力学研究

Consequences of Progressive Full-Thickness Focal Chondral Defects Involving the Medial and Lateral Femoral Condyles After Meniscectomy: A Biomechanical Study Using a Goat Model.

作者信息

Koh Jason L, Jacob Kevin C, Kulkarni Rohan, Vasilion Zachary, Amirouche Farid M L

机构信息

Department of Orthopaedic Surgery, Orthopaedic and Spine Institute, NorthShore University HealthSystem, Evanston, Illinois, USA.

Department of Orthopaedic Surgery, University of Illinois, Chicago, Illinois, USA.

出版信息

Orthop J Sports Med. 2022 Mar 24;10(3):23259671221078598. doi: 10.1177/23259671221078598. eCollection 2022 Mar.

Abstract

BACKGROUND

Full-thickness chondral defects alter tibiofemoral joint homeostasis and, if left untreated, have the potential to progress to osteoarthritis.

PURPOSE

To assess the effects of isolated and dual full-thickness chondral defect size and location on the biomechanical properties of the lateral femoral condyle (LFC) and medial femoral condyle (MFC) during dynamic knee flexion in goat knees without menisci.

METHODS

In 12 goat knees, we created progressively increasing full-thickness circular chondral defects (3-, 5-, and 7.5-mm diameter) in the weightbearing contact area of flexion and extension in the MFC, the LFC, or both. Each knee was fixed into a custom steel frame and attached to a motor with sensors inserted intra-articularly. For each testing condition, the knee was loaded to 100 N and underwent a dynamic range of motion between 90° of flexion and 30° of extension. The following parameters were collected: contact area, contact pressure, contact force, peak area, and peak pressure.

STUDY DESIGN

Controlled laboratory study.

RESULTS

The peak pressure at the defect rim of the MFC at full extension increased by 51.51% from no defect (1.887 MPa) to a 7.5-mm defect (2.859 MPa) ( < .001), and the peak pressure at the defect rim of the LFC at full extension increased by 139.14% from no defect (1.704 MPa) to a 7.5-mm defect (4.075 MPa) ( < .001). The peak pressures for LFC defects at all 3 diameters were significantly greater when compared with dual defects consisting of increasing LFC defect diameter and constant MFC defect diameter ( < .001 for all).

CONCLUSION

Extremely large increases in peak pressure were seen at the rim of articular cartilage defects when evaluated under dynamic loading conditions. Isolated LFC defects experienced a greater increase in defect rim stress concentrations when compared with isolated MFC defects for equivalent increases in defect size. Defect size played a significant role independent of location for peak pressures on the MFC and LFC.

CLINICAL RELEVANCE

Significant rim-loading effects increase with defect size under dynamic loading and may result in increasingly rapid progression of articular cartilage lesions. Within the context of this goat model, findings suggest that lateral compartment chondral lesions are more likely to progress than medial compartment lesions of equivalent size.

摘要

背景

全层软骨缺损会改变胫股关节的稳态,若不治疗,有可能发展为骨关节炎。

目的

评估在无半月板的山羊膝关节动态屈膝过程中,孤立和双侧全层软骨缺损的大小及位置对股骨外侧髁(LFC)和股骨内侧髁(MFC)生物力学特性的影响。

方法

在12个山羊膝关节中,我们在MFC、LFC或两者的屈伸负重接触区域制造逐渐增大的全层圆形软骨缺损(直径3毫米、5毫米和7.5毫米)。每个膝关节固定在定制的钢框架中,并连接到带有关节内插入传感器的电机上。对于每种测试条件,膝关节加载至100 N,并在90°屈膝和30°伸膝之间进行动态运动范围测试。收集以下参数:接触面积、接触压力、接触力、峰值面积和峰值压力。

研究设计

对照实验室研究。

结果

MFC在完全伸展时缺损边缘的峰值压力从无缺损时的1.887 MPa增加到7.5毫米缺损时的2.859 MPa,增加了51.51%(P <.001);LFC在完全伸展时缺损边缘的峰值压力从无缺损时的1.704 MPa增加到7.5毫米缺损时的4.075 MPa,增加了139.14%(P <.001)。与由LFC缺损直径增加和MFC缺损直径恒定组成的双侧缺损相比,所有3种直径的LFC缺损的峰值压力均显著更高(所有P <.001)。

结论

在动态加载条件下评估时,关节软骨缺损边缘的峰值压力出现极大增加。与同等大小缺损增加的孤立MFC缺损相比,孤立LFC缺损的缺损边缘应力集中增加更大。缺损大小在MFC和LFC的峰值压力方面,独立于位置发挥了重要作用。

临床意义

在动态加载下,显著的边缘加载效应随缺损大小增加,可能导致关节软骨损伤进展加快。在此山羊模型背景下,研究结果表明外侧间室软骨损伤比同等大小的内侧间室损伤更易进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7603/8958688/0b9f5f006f39/10.1177_23259671221078598-fig1.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验