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Characterization of initial microfracture defects in human condyles.

机译:con突中最初的微骨折缺陷的特征。

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Microfracture (MFX) is a cartilage repair technique that depends on cell migration from marrow-rich trabecular bone cavities into the cartilage lesion. This study tested the hypothesis that MFX awls with distinct geometry generate different hole shapes and variable bone marrow access in condyles with Grade III to IV lesions. Lateral and medial condyles from total knee arthroplasty (N = 24 male and female patients, 66 ± 9 years) were systematically microfractured ex vivo to 2 and 4 mm deep and the bone holes analyzed by micro-computed tomography. Subchondral bone in lesional condyles showed different degrees of sclerosis up to 2 mm deep ("porous," sclerotic, extremely dense). MFX holes ranged from 1.1 to 2.0 mm in diameter, and retained the awl shape with evidence of slight bone elastic rebound and bone compaction lining the holes that were increased by wider awl diameter and deeper MFX. Marrow access was significantly diminished by sclerosis for all three awls, with an average marrow access varying from 70% (nonlesional bone) to 40% (extremely dense bone). This study revealed that subchondral bone sclerosis can reach a critical limit beyond which MFX creates bone compaction and fissures instead of marrow access. Thieme Medical Publishers 333 Seventh Avenue, New York, NY 10001, USA.
机译:微骨折(MFX)是一种软骨修复技术,它依赖于细胞从富含骨髓的小梁骨骨腔向软骨病变的迁移。这项研究检验了以下假设,即具有不同几何形状的MFX锥子在具有III至IV级病变的con中产生不同的孔形状和可变的骨髓通路。将来自全膝关节置换术的外侧和内侧con(N = 24例男性和女性患者,66±9岁)离体地系统性地微破裂至2和4 mm深,并通过微计算机断层扫描对骨孔进行分析。病变con中的软骨下骨显示出不同程度的硬化,最深达2毫米(“多孔”,硬化,非常致密)。 MFX孔的直径范围为1.1到2.0 mm,并保留了锥子的形状,并有轻微的骨弹性反弹和骨压实的迹象,这些孔随着锥子直径的增大和MFX的增加而增加。所有三个锥子的硬化都使骨髓进入显着减少,平均骨髓进入从70%(非病变骨)到40%(极致密骨)不等。这项研究表明,软骨下骨硬化症可以达到一个关键的极限,超过这个极限,MFX就会造成骨压实和裂痕而不是骨髓进入。美国纽约第七大街333号Thieme Medical Publishers,美国纽约。

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