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小儿冠状缝纤维排列及相互交错对冠状缝力学性能的影响。

Pediatric Coronal Suture Fiber Alignment and the Effect of Interdigitation on Coronal Suture Mechanical Properties.

作者信息

Adamski Kelly Nicole, Loyd Andre Matthew, Samost Albert, Myers Barry, Nightingale Roger, Smith Kathleen, 'Dale' Bass Cameron R

机构信息

Department of Biomedical Engineering, Injury and Orthopaedic Biomechanics Laboratory, Duke University, Box 90281, Durham, NC, 27708-0281, USA,

出版信息

Ann Biomed Eng. 2015 Sep;43(9):2101-11. doi: 10.1007/s10439-015-1275-x. Epub 2015 Feb 18.

Abstract

The morphological and mechanical properties of the pediatric skull are important in understanding pediatric head injury biomechanics. Although previous studies have analyzed the morphology of cranial sutures, none has done so in pediatric specimens nor have previous studies related the morphology to mechanical properties of human sutures. This study quantified the geometry of pediatric cranial sutures and investigated its correlation with the suture mechanical properties. First, the suture fiber alignment was quantified using histological analysis for four ages-neonate, 9 months-old, 11 months-old, and 18 months-old. For the morphometric investigation of the suture interdigitation, suture samples from a 6-year-old were scanned using micro-CT and the level of interdigitation was measured using two techniques. The first technique, the sinuosity index, was calculated by dividing the suture path along the surface of the skull by the suture distance from beginning to end. The second technique, the surface area interdigitation index, was calculated by measuring the surface area of the bone interface outlining the suture and dividing it by the cross-sectional area of the bone. The mechanical properties were obtained using methods reported in Davis et al.6. The results of the histological analysis showed a significant increase in fiber alignment in older specimen; where random fiber alignment has an average angle deviation of 45°, neonatal suture fibers have an average deviation of 32.2° and the 18-month-old fibers had an average deviation of 16.2° (p < 0.0001). For the suture index measurements, only the sinuosity was positively correlated with the ultimate strain (R (2) = 0.62, Bonferroni corrected p = 0.011) but no other measurements showed a significant relationship, including the amount of interdigitation and elastic modulus. Our results demonstrate that there is a distinct developmental progression of the suture fiber alignment at a young age, but the differences in suture interdigitation can only predict the ultimate strain and no other mechanical properties.

摘要

小儿颅骨的形态学和力学特性对于理解小儿头部损伤生物力学非常重要。尽管先前的研究分析了颅缝的形态,但均未针对小儿标本进行,也没有将形态与人类颅缝的力学特性相关联。本研究对小儿颅缝的几何形状进行了量化,并研究了其与颅缝力学特性的相关性。首先,使用组织学分析对四个年龄段(新生儿、9个月大、11个月大、18个月大)的颅缝纤维排列进行了量化。对于颅缝交错的形态测量研究,使用微型CT扫描了一名6岁儿童的颅缝样本,并使用两种技术测量了交错程度。第一种技术,即曲折指数,通过将沿颅骨表面的颅缝路径除以颅缝从头到尾的距离来计算。第二种技术,即表面积交错指数,通过测量勾勒颅缝的骨界面的表面积并将其除以骨的横截面积来计算。力学特性采用Davis等人报告的方法获得。组织学分析结果显示,年龄较大的标本中纤维排列有显著增加;随机纤维排列的平均角度偏差为45°,新生儿颅缝纤维的平均偏差为32.2°,18个月大婴儿纤维的平均偏差为16.2°(p < 0.0001)。对于颅缝指数测量,只有曲折度与极限应变呈正相关(R (2) = 0.62,Bonferroni校正p = 0.011),但其他测量均未显示出显著关系,包括交错量和弹性模量。我们的结果表明,在幼年时颅缝纤维排列有明显的发育进程,但颅缝交错的差异只能预测极限应变,而不能预测其他力学特性。

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