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动物模型中椎体拴系术对椎体生长板功能的再激活。

Reactivation of Vertebral Growth Plate Function in Vertebral Body Tethering in an Animal Model.

机构信息

Childrens' Orthopedic Department, Medical University of Lublin, Gębali 6, 20-093 Lublin, Poland.

Department and Clinic of Animal Surgery, Faculty of Veterinary Medicine, University of Life Sciences, Głęboka 30, 20-612 Lublin, Poland.

出版信息

Int J Mol Sci. 2022 Sep 30;23(19):11596. doi: 10.3390/ijms231911596.

Abstract

Flexible spine tethering is a relatively novel fusionless surgical technique that aims to correct scoliosis based on growth modulation due to the pressure exerted on the vertebral body epiphyseal growth plate. The correction occurs in two phases: immediate intraoperative and postoperative with growth. The aim of this study was to evaluate the reactivation of vertebral growth plate function after applying corrective forces. The rat tail model was used. Asymmetric compression and distraction of caudal growth plates were performed using a modified external fixation apparatus. Radiological and histopathological data were analysed. After three weeks of correction, the activity of the structures increased across the entire growth plate width, and the plate was thickened. The height of the hypertrophic layer and chondrocytes on the concave side doubled in height. The height of chondrocytes and the cartilage thickness on the concave and central sides after the correction did not differ statistically significantly from the control group. Initiation of the correction of scoliosis in the growing spine, with relief of the pressure on the growth plate, allows the return of the physiological activity of the growth cartilage and restoration of the deformed vertebral body.

摘要

脊柱弹性拴系术是一种相对新颖的非融合手术技术,旨在通过对椎体骺板施加压力来调节生长,从而矫正脊柱侧凸。这种矫正分为两个阶段:术中即刻和术后生长。本研究旨在评估施加矫正力后椎体骺板功能的重新激活。采用鼠尾模型,使用改良的外固定装置对尾侧骺板进行不对称压缩和牵伸。分析影像学和组织病理学数据。矫正 3 周后,整个骺板宽度的结构活性增加,骺板变厚。凹侧肥大层和软骨细胞的高度增加了一倍。矫正后凹侧和中央侧的软骨细胞高度和软骨厚度与对照组相比无统计学差异。在生长脊柱中启动脊柱侧凸的矫正,减轻对生长板的压力,可使生长软骨的生理活性恢复,并使变形的椎体得到修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a499/9570152/263a02ce1399/ijms-23-11596-g001.jpg

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