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Determination of Poisson Ratio of Bovine Extraocular Muscle by Computed X-Ray Tomography

机译:用计算机X射线断层摄影术测定牛眼外肌的泊松比

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摘要

The Poisson ratio (PR) is a fundamental mechanical parameter that approximates the ratio of relative change in cross sectional area to tensile elongation. However, the PR of extraocular muscle (EOM) is almost never measured because of experimental constraints. The problem was overcome by determining changes in EOM dimensions using computed X-ray tomography (CT) at microscopic resolution during tensile elongation to determine transverse strain indicated by the change in cross-section. Fresh bovine EOM specimens were prepared. Specimens were clamped in a tensile fixture within a CT scanner (SkyScan, Belgium) with temperature and humidity control and stretched up to 35% of initial length. Sets of 500–800 contiguous CT images were obtained at 10-micron resolution before and after tensile loading. Digital 3D models were then built and discretized into 6–8-micron-thick elements. Changes in longitudinal thickness of each microscopic element were determined to calculate strain. Green's theorem was used to calculate areal strain in transverse directions orthogonal to the stretching direction. The mean PR from discretized 3D models for every microscopic element in 14 EOM specimens averaged 0.457 ± 0.004 (SD). The measured PR of bovine EOM is thus near the limit of incompressibility.
机译:泊松比(PR)是一个基本的机械参数,近似于横截面积的相对变化与拉伸伸长率之比。但是,由于实验的限制,眼外肌(EOM)的PR几乎从未测量过。通过在拉伸伸长过程中使用计算机X射线断层扫描(CT)以微观分辨率确定EOM尺寸的变化来确定该问题,从而确定横截面变化所指示的横向应变,从而解决了该问题。准备了新鲜的牛EOM标本。将样品夹在具有温度和湿度控制的CT扫描仪(SkyScan,比利时)中的拉伸夹具中,并拉伸至初始长度的35%。在拉伸载荷之前和之后,以10微米的分辨率获得了500-800个连续的CT图像集。然后,构建数字3D模型并将其离散化为6-8微米厚的元素。确定每个微观元件的纵向厚度的变化以计算应变。格林定理用于计算与拉伸方向正交的横向应变。离散的3D模型在14个EOM样本中每个微观元素的平均PR平均为0.457±0.004(SD)。因此,测得的牛EOM的PR接近不可压缩的极限。

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