Department of Mechanical Engineering, Stanford University, Stanford, California, USA.
Invest Ophthalmol Vis Sci. 2012 Feb 21;53(2):873-80. doi: 10.1167/iovs.11-8611. Print 2012 Feb.
To measure the transverse shear modulus of the human corneal stroma and its profile through the depth by mechanical testing, and to assess the validity of the hypothesis that the shear modulus will be greater in the anterior third due to increased interweaving of lamellae.
Torsional rheometry was used to measure the transverse shear properties of 6 mm diameter buttons of matched human cadaver cornea pairs. One cornea from each pair was cut into thirds through the thickness with a femtosecond laser and each stromal third was tested individually. The remaining intact corneas were tested to measure full stroma shear modulus. The shear modulus from a 1% shear strain oscillatory test was measured at various levels of axial compression for all samples.
After controlling for axial compression, the transverse shear moduli of isolated anterior layers were significantly higher than central and posterior layers. Mean modulus values at 0% axial strain were 7.71 ± 6.34 kPa in the anterior, 1.99 ± 0.45 kPa in the center, 1.31 ± 1.01 kPa in the posterior, and 9.48 ± 2.92 kPa for full thickness samples. A mean equilibrium compressive modulus of 38.7 ± 8.6 kPa at 0% axial strain was calculated from axial compression measured during the shear tests.
Transverse shear moduli are two to three orders of magnitude lower than tensile moduli reported in the literature. The profile of shear moduli through the depth displayed a significant increase from posterior to anterior. This gradient supports the hypothesis and corresponds to the gradient of interwoven lamellae seen in imaging of stromal cross-sections.
通过力学测试测量人眼角膜基质的横向剪切模量及其沿深度的分布,并评估剪切模量在前三分之一处由于板层交织增加而更大的假设的有效性。
扭转流变仪用于测量匹配的人尸体眼角膜对的 6 毫米直径按钮的横向剪切特性。每对角膜的一半通过飞秒激光切成三部分,每个基质三分之一分别进行测试。其余完整的角膜用于测试以测量整个基质的剪切模量。对所有样本在不同的轴向压缩水平下测量了 1%剪切应变的振荡测试的剪切模量。
在控制轴向压缩后,分离的前层的横向剪切模量明显高于中央和后层。0%轴向应变时的平均模量值在前部为 7.71 ± 6.34 kPa,在中心为 1.99 ± 0.45 kPa,在后部为 1.31 ± 1.01 kPa,在整个厚度样本中为 9.48 ± 2.92 kPa。从剪切测试中测量的轴向压缩计算出 0%轴向应变时的平均平衡压缩模量为 38.7 ± 8.6 kPa。
横向剪切模量比文献中报道的拉伸模量低两到三个数量级。沿深度的剪切模量分布显示出从前向后显著增加。这种梯度支持假设,并与基质横截面成像中观察到的交织板层的梯度相对应。