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大鼠矢状缝的年龄依赖性特性和准静态应变。

Age-dependent properties and quasi-static strain in the rat sagittal suture.

作者信息

Henderson James H, Chang Lillian Y, Song HanJoon M, Longaker Michael T, Carter Dennis R

机构信息

Biomechanical Engineering Division, Mechanical Engineering Department, Stanford University, Stanford, CA 94025-4038, USA.

出版信息

J Biomech. 2005 Nov;38(11):2294-301. doi: 10.1016/j.jbiomech.2004.07.037.

Abstract

We measured the morphology of and performed tensile tests on sagittal sutures from rats of postnatal age 2 to 60 days. Using the properties measured ex vivo and a pressure vessel-based analysis, we estimated the quasi-static strain that had existed in the suture in vivo from 2 to 60 days. Sutural thickness, width, and stiffness per length were notable properties found to be age dependent. Sutural thickness increased 4.5-fold (0.11-0.50mm) between 2 and 60 days. Sutural width increased transiently between 2 and 20 days, peaking around 8 days; at 8 days, mean sutural width was 75% larger than mean sutural width at two days (0.35+/-0.07 (SD) vs. 0.20+/-0.06 mm). Sutural stiffness per length increased 4.4-fold (8.77-38.3N/mm/mm) between 2 and 60 days. The quasi-static sutural strain estimated to exist in vivo averaged 270+/-190 muepsilon between 2 and 60 days and was not age dependent. These findings provide data on the age-dependent sutural properties of infant to mature rats and provide the first estimate of quasi-static sutural strain in vivo in the rat. The findings show that during development the rat sagittal suture, as a structure, changes significantly and is exposed to quasi-static tensile strain in vivo due to intracranial pressure.

摘要

我们测量了出生后2至60天大鼠矢状缝的形态,并对其进行了拉伸试验。利用体外测量的特性和基于压力容器的分析,我们估算了2至60天内在体矢状缝中存在的准静态应变。发现缝的厚度、宽度和单位长度刚度是与年龄相关的显著特性。缝的厚度在2至60天之间增加了4.5倍(从0.11毫米增加到0.50毫米)。缝的宽度在2至20天之间短暂增加,在8天左右达到峰值;在8天时,平均缝宽比2天时的平均缝宽大75%(0.35±0.07(标准差)对0.20±0.06毫米)。单位长度的缝刚度在2至60天之间增加了4.4倍(从8.77牛/毫米/毫米增加到38.3牛/毫米/毫米)。估计在2至60天内在体存在的准静态缝应变平均为270±190微应变,且与年龄无关。这些发现提供了关于幼鼠到成年大鼠缝特性随年龄变化的数据,并首次估算了大鼠体内矢状缝的准静态应变。研究结果表明,在发育过程中,大鼠矢状缝作为一种结构发生了显著变化,并由于颅内压在体内受到准静态拉伸应变。

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