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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Single lamellar mechanics of the human lumbar anulus fibrosus
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Single lamellar mechanics of the human lumbar anulus fibrosus

机译:人腰椎纤维环的单层力学

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The mechanical behavior of the entire anulus fibrosus is determined essentially by the tensile properties of its lamellae, their fiber orientations, and the regional variation of these quantities. Corresponding data are rare in the literature. The paper deals with an in vitro study of single lamellar anulus lamellae and aims to determine (i) their tensile response and regional variation, and (ii) the orientation of lamellar collagen fibers and their regional variation. Fresh human body-disc-body units (L1–L2, n=11) from cadavers were cut midsagittally producing two hemidisc units. One hemidisc was used for the preparation of single lamellar anulus specimens for tensile testing, while the other one was used for the investigation of the lamellar fiber orientation. Single lamellar anulus specimens with adjacent bone fragments were isolated from four anatomical regions: superficial and deep lamellae (3.9±0.21 mm, mean ± SD, apart from the outer boundary surface of the anulus fibrosus) at ventro-lateral and dorsal positions. The specimens underwent cyclic uniaxial tensile tests at three different strain rates in 0.15 mol/l NaCl solution at 37°C, whereby the lamellar fiber direction was aligned with the load axis. For the characterization of the tensile behavior three moduli were calculated: Elow (0–0.1 MPa), Emedium (0.1–0.5 MPa) and Ehigh (0.5–1 MPa). Additionally, specimens were tested with the load axis transverse to the fiber direction. From the second hemidisc fiber angles with respect to the horizontal plane were determined photogrammetrically from images taken at six circumferential positions from ventral to dorsal and at three depth levels. Tensile moduli along the fiber direction were in the range of 28–78 MPa (regional mean values). Superficial lamellae have larger Emedium (p=0.017) and Ehigh (p=0.012) than internal lamellae, and the mean value of superficial lamellae is about three times higher than that of deep lamellae. Tensile moduli of ventro-lateral lamellae do not differ significantly from the tensile moduli of dorsal lamellae, and Elow is generally indifferent with respect to the anatomical region. Tensile moduli transverse to the fiber direction were about two orders of magnitude smaller (0.22±0.2 MPa, mean ± SD, n=5). Tensile properties are not correlated significantly with donor age. Only small viscoelastic effects were observed. The regional variation of lamellar fiber angle is described appropriately by a regression line |φ|=23.2+0.130× α(r~2=0.55, p<0.001), where is the polar angle associated with the circumferential position. The single anulus lamella may be seen as the elementary structural unit of the anulus fibrosus, and exhibits marked anisotropy and distinct regional variation of tensile properties and fiber angles. These features must be considered for appropriate physical and numerical modeling of the anulus fibrosus.
机译:整个肛门环纤维的机械行为主要取决于其薄片的拉伸特性,其纤维取向以及这些数量的区域变化。在文献中很少有相应的数据。本文涉及单层板环的体外研究,目的是确定(i)其拉伸响应和区域变化,以及(ii)板层胶原纤维的取向及其区域变化。尸体中线切下来自尸体的新鲜人体盘体单位(L1-L2,n = 11),产生两个半椎体单位。一个hemidisc用于制备用于拉伸测试的单个层状环标本,而另一个用于研究层状纤维取向。从四个解剖区域中分离出具有相邻骨碎片的单个层状肛门环标本:在腹外侧和背侧位置的浅层和深层椎板(3.9±0.21 mm,平均值±SD,与肛门环纤维的外边界面分开)。在37°C的0.15 mol / l NaCl溶液中,以三种不同的应变速率对样品进行循环单轴拉伸测试,从而使层状纤维方向与载荷轴对齐。为了表征拉伸性能,计算了三个模量:Elow(0-0.1 MPa),Emedium(0.1-0.5 MPa)和Ehigh(0.5-1 MPa)。另外,以与纤维方向垂直的载荷轴测试了样品。从第二半纤毛相对于水平面的角度是通过摄影测量从从腹侧到背侧的六个圆周位置以及在三个深度水平上拍摄的图像确定的。沿纤维方向的拉伸模量为28-78 MPa(区域平均值)。表面薄层比内部薄层具有更大的Emedium(p = 0.017)和Ehigh(p = 0.012),表面薄层的平均值大约是深层薄层的三倍。腹外侧片的拉伸模量与背侧片的拉伸模量没有显着差异,并且Elow通常在解剖区域上是无关紧要的。横向于纤维方向的拉伸模量小约两个数量级(0.22±0.2 MPa,平均值±SD,n = 5)。拉伸性能与供体年龄没有显着相关。仅观察到小的粘弹性效应。层状纤维角的区域变化由回归线|φ| = 23.2 + 0.130×α(r〜2 = 0.55,p <0.001)适当描述,其中极角与圆周位置相关。单个环片可以看作是环纤维的基本结构单元,并且表现出明显的各向异性以及拉伸特性和纤维角度的明显区域变化。必须对这些特征进行适当的纤维环物理和数值建模。

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