去矿物质冻干异体骨块与缝合固定技术用于重建上颌骨牙槽骨缺损:病例系列。

Chengzhi Dong, Simin Zheng, Zhuoheng Xia, Runzhi Chen, Yuxin Zheng, Fan Yang, Linhong Wang
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摘要

目的:本研究旨在评估使用去矿物质冻干异体骨块(DFDABB)结合骨膜垂直褥式缝合(PVMS)技术重建上颌骨严重水平牙槽骨缺损的临床效果:方法:在上颌骨连续水平缺损病例中,使用DFDABB和填充间隙的脱蛋白牛骨基质(DBBM)进行骨增量。随后,将可吸收胶原膜小心地覆盖在植骨表面,并使用骨膜垂直褥式缝合技术(PVMS)将骨膜和植骨牢固固定。通过术前和愈合期 6-10 个月后的锥形束计算机断层扫描(CBCT),对线性变化进行评估:本研究共收录了 7 名女性患者,共使用了 10 块骨块和 13 个种植体。其中一个伤口术后轻微破裂,但未感染,所有种植体均成功实现骨结合。牙槽嵴下 5 毫米处的平均宽度在植骨前为 4.52 ± 2.03 毫米,种植后为 9.79 ± 1.57 毫米,平均增加了 5.26 ± 1.97 毫米。同样,在牙槽嵴下10毫米处,植骨前的牙槽嵴宽度为(7.23 ± 3.60)毫米,种植后扩大到(11.81 ± 2.90)毫米,平均增加了(4.58 ± 2.01)毫米:本病例系列展示了 DFDABB 与 PVMS 技术相结合的成功应用,可在上颌骨严重连续水平骨缺损的情况下获得足够的骨宽度用于种植。DFDABB结合PVMS技术可在上颌骨水平连续性缺损的上颌骨增量手术中获得良好的水平骨增量。不过,还需要进一步的研究来验证这些发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Demineralized, Freeze-Dried Allogeneic Bone Blocks With Suture Fixation Technique for Reconstruction of Maxillary Alveolar Bone Deficiency: A Case Series.

This study aims to evaluate the clinical outcomes of using demineralized, freeze-dried allogeneic bone blocks (DFDABB) combined with the periosteal vertical mattress suture (PVMS) technique for the reconstruction of severe horizontal alveolar bone deficiencies in the maxilla. In continuous horizontal maxillary defects cases, bone augmentation was performed using DFDABB and deproteinized bovine bone matrix (DBBM) filling the interstice. Subsequently, a resorbable collagen membrane was carefully placed over the graft surface, and both the membrane and bone graft were firmly secured using the PVMS technique. Linear changes were assessed through superimposed cone-beam computerized tomography scans obtained before the operation and after a healing period of 6-10 months. A total of 7 female patients with 10 bone blocks and 13 implants were included in this study. One of the wounds was slightly ruptured postoperatively without infection, and all implants showed successful osseointegration. The average alveolar ridge width at a point 5 mm below the crest was 4.52 ± 2.03 mm before bone graft and 9.79 ± 1.57 mm after implantation with an average increase of 5.26 ± 1.97 mm. Similarly, at a point 10 mm below the crest, the pregraft alveolar ridge width measured 7.23 ± 3.60 mm, and postimplantation, it expanded to 11.81 ± 2.90 mm, showing an average gain of 4.58 ± 2.01 mm. This case series demonstrates the successful application of DFDABB combined with the PVMS technique to achieve adequate bone width for implantation at severe continuous horizontal bone deficiency of the maxilla. DFDABB with the PVMS technique resulted in superior horizontal bone gain during maxillary bone augmentation with horizontal continuity deficiency. However, further studies are necessary to validate these findings.

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