首页> 美国卫生研究院文献>Arthroscopy Techniques >All-Arthroscopic Nanofractured Autologous Matrix-Induced Chondrogenesis (A-NAMIC) Technique for the Treatment of Focal Chondral Lesions of the Knee
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All-Arthroscopic Nanofractured Autologous Matrix-Induced Chondrogenesis (A-NAMIC) Technique for the Treatment of Focal Chondral Lesions of the Knee

机译:全关节镜纳米骨折自体基质诱导软骨形成(A-NAMIC)技术治疗膝关节软骨病灶。

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摘要

Nanofractured autologous matrix-induced chondrogenesis (NAMIC©) is a 1-step technique that combines nanofracture needling to induce bone marrow stimulation (BMS) and the use of cell-free collagen matrix to optimize cartilage regeneration. In this Technical Note, we describe a modification of the NAMIC procedure using mosaicplasty trephines to prepare the lesion surface and to shape collagen implants in an all-arthroscopic approach (A-NAMIC). This technique is indicated for the treatment of International Cartilage Repair Society grade III to IV knee chondral lesions of ≤4 cm . After damaged cartilage is debrided, trephines are used to create a flat, circular lesion surfaces. Subsequently, BMS is performed with nanofracture, eliciting reproducible and stop-controlled subchondral bone perforations of 9-mm depth and 1-mm width. The collagen membrane is then cut to size with the trephine, placed over the prepared defect, and secured with fibrin glue, preventing loss of regenerating cells and growth factors to the joint space. Using trephines allows the rapid and precise creation of smooth defect surfaces with known dimensions, ensuring optimal lesion coverage. Additionally, nanofracture reduces trabecular compaction and allows for a deeper access to subchondral bone in comparison with conventional microfracture, improving lesion filling and production of cartilage with higher hyaline content.
机译:纳米骨折的自体基质诱导软骨形成(NAMIC©)是一项第一步技术,将纳米骨折的针刺技术诱导骨髓刺激(BMS),并使用无细胞的胶原蛋白基质来优化软骨再生。在本技术说明中,我们描述了使用镶嵌整形海豚对NAMIC程序进行的修改,以准备病变表面并以全关节镜方式(A-NAMIC)塑造胶原蛋白植入物的形状。该技术适用于治疗国际软骨修复协会的III至IV级≤4cm的膝软骨损伤。清创受损的软骨后,用海冰产生平坦的圆形病变表面。随后,用纳米骨折进行BMS,引起可再现且受控制的软骨下骨穿孔,深度为9毫米,宽度为1毫米。然后将胶原膜用环戊菊糖切成一定尺寸,放置在准备好的缺损处,并用纤维蛋白胶固定,防止再生细胞和生长因子流到关节间隙。使用高音可以快速,精确地创建具有已知尺寸的光滑缺损表面,从而确保最佳的病变覆盖率。另外,与传统的微骨折相比,纳米骨折减少了小梁的压实,并允许更深地进入软骨下骨,从而改善了病变的充盈程度并增加了透明质含量的软骨。

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