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C2 椎板横截面积的形态计量分析与分类。

Morphometric Analysis and Classification of the Cross-Sectional Shape of the C2 Lamina.

机构信息

Catholic Institute for Applied Anatomy, Department of Anatomy, College of Medicine, The Catholic University of Korea, 222 Banpo-daero, Seocho-gu, Seoul 06591, Republic of Korea.

出版信息

Biomed Res Int. 2017;2017:7276946. doi: 10.1155/2017/7276946. Epub 2017 Sep 25.

Abstract

A thorough understanding of the morphology of the lamina of the second cervical vertebra (C2) is important for safe C2 translaminar screw placement. Although anatomical characteristics of the C2 lamina have been widely documented, individual differences in morphology have not been addressed. The aim of this study was to morphometrically analyze the cross-sectional shape of the C2 lamina and classify the shape to describe individual differences. Morphometric analysis was conducted on 145 three-dimensional C2 models based on computerized tomography images from Korean adult cadavers. Several parameters were measured on a cross-section image of the lamina model. Based on numerical criteria, all of the C2 lamina's cross-sectional shapes could be categorized into three distinctive morphological types: pyriform, ellipse, and obpyriform shapes. We confirmed that most Koreans can accommodate C2 translaminar screw placement with a lower limit of the 95% confidence interval of thickness measured at 6.26 mm. Morphometric analysis suggested that the obpyriform-shaped lamina (4.48%) is likely to require screw trajectory adjustment to avoid cortical breakout of the screw. Our results will enhance current anatomical understanding of the C2 lamina and thus facilitate safer C2 translaminar screw placement.

摘要

深入了解第二颈椎(C2)椎板的形态对于安全进行 C2 经椎板螺钉固定非常重要。尽管 C2 椎板的解剖学特征已被广泛记录,但尚未涉及形态的个体差异。本研究旨在对 C2 椎板的横截面形状进行形态计量学分析,并对形状进行分类以描述个体差异。对来自韩国成人尸体的计算机断层扫描图像的 145 个 C2 三维模型进行了形态计量学分析。在椎板模型的横截面图像上测量了几个参数。根据数值标准,所有 C2 椎板的横截面形状可分为三种明显的形态类型:梨形、椭圆形和类梨形。我们证实,大多数韩国人可以接受 C2 经椎板螺钉固定,其厚度的 95%置信区间下限为 6.26mm。形态计量学分析表明,类梨形椎板(4.48%)可能需要调整螺钉轨迹,以避免螺钉皮质突破。我们的研究结果将增强对 C2 椎板的当前解剖学理解,从而更安全地进行 C2 经椎板螺钉固定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc21/5632859/b4f056adbdaf/BMRI2017-7276946.001.jpg

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