NYU Hospital for Joint Diseases, New York, NY 10003, USA.
Spine (Phila Pa 1976). 2012 Jul 1;37(15):E883-9. doi: 10.1097/BRS.0b013e31824d973c.
Histological growth plate analysis. OBJECTIVE.: To evaluate the histological effects on vertebral growth plates following corrective mechanical tethering in the porcine scoliosis model.
Theoretically, growth modulation allows progressive vertebral correction in the setting of scoliosis (Hueter-Volkmann principle).
This IACUC-approved study divided 9 immature Yorkshire pigs into 2 groups: deforming tether release (TR, n = 4) group and anterior corrective (AC, n = 5) tether group. Once 50° coronal Cobb was demonstrated, TR had release of the deforming tether, whereas AC had release of the deforming tether and additional placement of a corrective tether. After 20 weeks of observation, pigs were killed, spines were removed, and apical samples were prepared for histological study. Growth plate analysis included the following histological parameters: proliferative zone height, hypertrophic zone height, and cell heights within the hypertrophic zone. Student t test was used to evaluate differences within and between groups.
No significant differences were found within the release group on the concave versus convex side in terms of proliferative zone height, hypertrophic zone height, and cell heights in the hypertrophic zone. In the anterior correction group, the proliferative zone height was significantly smaller on the concave side than on the convex side (P < 0.01); no significant differences were found in AC on the concave versus convex side in terms of hypertrophic zone height and cell heights in the hypertrophic zone. No significant differences were found in any parameters between TR and AC on either the concave or the convex side.
No significant decrease in any of the measured parameters was observed in the anterior correction group compared with the tether release group. These histological findings are consistent with preservation of growth potential.
组织学生长板分析。
评估猪脊柱侧凸模型中矫正机械束缚对椎体生长板的组织学影响。
从理论上讲,生长调节允许在脊柱侧凸的情况下进行渐进性椎体矫正(Hueter-Volkmann 原则)。
这项经过 IACUC 批准的研究将 9 头未成熟的约克夏猪分为 2 组:变形束缚释放(TR,n=4)组和前向矫正(AC,n=5)束缚组。一旦出现 50°冠状 Cobb 角,TR 释放变形束缚,而 AC 释放变形束缚并额外放置矫正束缚。观察 20 周后,处死猪,取出脊柱,并准备根尖样本进行组织学研究。生长板分析包括以下组织学参数:增殖区高度、肥大区高度和肥大区细胞高度。采用 Student t 检验评估组内和组间的差异。
在释放组中,无论是凹侧还是凸侧,增殖区高度、肥大区高度和肥大区细胞高度均无显著差异。在前向矫正组中,凹侧的增殖区高度明显小于凸侧(P<0.01);凹侧和凸侧的肥大区高度和肥大区细胞高度在 AC 中均无显著差异。在凹侧和凸侧,TR 和 AC 之间在任何参数上均无显著差异。
与释放组相比,前向矫正组中没有观察到任何测量参数显著降低。这些组织学发现与生长潜力的保留一致。