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动物模型中三种不同间隙不植骨应用内固定系统下颌体骨切开术后骨修复的组织学分析。

Histological Analysis of Bone Repair in Mandibular Body Osteotomy Using Internal Fixation System in Three Different Gaps without Bone Graft in an Animal Model.

机构信息

Division of Oral, Facial and Maxillofacial Surgery, Universidad de La Frontera, Temuco, Chile.

Center for Excellence in Morphological and Surgical Studies (CEMyQ), Universidad de La Frontera, Temuco, Chile.

出版信息

Biomed Res Int. 2019 Jul 24;2019:8043510. doi: 10.1155/2019/8043510. eCollection 2019.

Abstract

The aim was to analyze histologically the bone repair in a mandibular osteotomy model with different gaps between the segments. Nine male rabbits who underwent osteotomies on the mandibular body were fixed with a 1.5 system plate and no bone graft; group 1 (2 mm gap between segments), group 2 (5 mm gap between segments), and group 3 (8 mm gap between segments) were included. After 8 weeks they were euthanized and the sample was processed for histological analysis. Group 1 showed advanced bone repair with cartilaginous tissue and cancellous bone, showing osteoblasts and type III collagenous fibers. In group 2, a more delayed ossification was observed, with an extensive area of peripheral ossifying cartilage and chondrocytes in greater number at the center of the defect; group 3 showed no evidence of ossification with fibrous tissue, a very low level of chondrocytes, and some bone sequestrate. We can conclude that, in this animal model, 2 or 5 mm gap in the osteotomy could be repaired as bone when fixation is used. The size of the gap is an important factor for the use of bone grafts considering endochondral ossification. This model can be used for graft analysis and related technologies.

摘要

目的是分析不同节段间隙的下颌骨切开模型中的骨修复情况。9 只雄性兔子在下颌体上进行了切开术,并用 1.5 系统板固定,没有进行骨移植;包括组 1(节段间有 2 毫米间隙)、组 2(节段间有 5 毫米间隙)和组 3(节段间有 8 毫米间隙)。8 周后处死动物并对样本进行组织学分析。组 1 显示出软骨组织和松质骨的先进骨修复,有成骨细胞和 III 型胶原纤维。组 2 观察到更延迟的骨化,在缺损中心有广泛的周围骨化软骨和更多的软骨细胞;组 3 没有骨化的证据,只有纤维组织、极低水平的软骨细胞和一些骨块。我们可以得出结论,在这种动物模型中,当使用固定物时,2 或 5 毫米的骨切开间隙可以修复为骨。间隙的大小对于考虑软骨内成骨的骨移植是一个重要因素。该模型可用于移植物分析和相关技术。

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