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Residual deformations in ocular tissues

机译:眼组织中的残余变形

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摘要

Residual deformations strongly influence the local biomechanical environment in a number of connective tissues. The sclera is known to be biomechanically important in healthy and diseased eyes, such as in glaucoma. Here, we study the residual deformations of the sclera, as well as the adjacent choroid and retina. Using freshly harvested porcine eyes, we developed two approaches of quantifying residual deformations in the spherically shaped tissues of interest. The first consisted of punching discs from the posterior wall of the eye and quantifying the changes in the area and eccentricity of these samples. The second consisted of cutting a ring from the equatorial sclera and making stress-relieving cuts in it. Measurements of curvature were made before and after the stress-relieving cuts. Using the first approach, we observed a 42% areal contraction of the choroid, but only modest contractions of the sclera and retina. The observed contractions were asymmetric. In the second approach, we observed an opening of the scleral rings (approx. 10% decrease in curvature). We conclude that residual bending deformations are present in the sclera, which we speculate may be due to radially heterogeneous growth and remodelling of the tissue during normal development. Further, residual areal deformations present in the choroid may be due to the network of elastic fibres in this tissue and residual deformations in the constituent vascular bed. Future studies of ocular biomechanics should attempt to include effects of these residual deformations into mechanical models in order to gain a better understanding of the biomechanics of the ocular wall.
机译:残余变形会严重影响许多结缔组织中的局部生物力学环境。已知巩膜在健康和患病的眼睛(例如青光眼)中具有重要的生物力学作用。在这里,我们研究巩膜以及邻近脉络膜和视网膜的残余变形。使用新鲜收获的猪眼,我们开发了两种量化目标球形组织中残余变形的方法。第一种方法是从眼后壁冲孔盘,并量化这些样品的面积和偏心率的变化。第二个步骤是从赤道巩膜切开一个环,并在其中切开应力。在消除应力的切口之前和之后进行曲率的测量。使用第一种方法,我们观察到脉络膜的区域收缩为42%,但巩膜和视网膜仅适度收缩。观察到的收缩是不对称的。在第二种方法中,我们观察到巩膜环开口(曲率降低约10%)。我们得出结论,巩膜中存在残余弯曲变形,我们推测这可能是由于正常发育过程中组织的径向异质生长和重塑所致。此外,脉络膜中存在的残余面积变形可能是由于该组织中的弹性纤维网络和组成血管床中的残余变形所致。眼生物力学的未来研究应尝试将这些残余变形的影响纳入力学模型,以便更好地了解眼壁的生物力学。

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