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Evaluation of Posterior Porcine Sclera Elasticity in situ as a function of IOP

机译:评价猪后巩膜弹性作为IOP的函数

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The biomechanical properties of the sclera could provide key information regarding the progression and etiology of ocular diseases. For example, an elevated intraocular pressure is one of the most common risk factors for glaucoma and can cause pathological deformations in the tissues of the posterior eye, such as the sclera, potentially damaging these vital tissues. Previous work has evaluated scleral biomechanical response to global displacements with techniques such as inflation testing. However, these methods cannot provide localized biomechanical assessments. In this pilot work, we induce low amplitude (< 10 μm) elastic waves using acoustic radiation force in posterior scleral tissue of fresh porcine eyes (n=2) in situ. The wave propagation induced using an ultrasound transducer was detected across an 8 mm region using a phase-sensitive optical coherence elastography system (PhS-OCE). The elastographic measurements were taken at various artificially controlled intraocular pressures (IOP). The IOP was pre-cycled before being set to 10 mmHg for the first measurement. Subsequent measurements were taken at 20 mmHg and 30 mmHg for each sample. The results show an increase in the stiffness of the sclera as a function of IOP. Furthermore, we observed a variation in the elasticity based on direction, suggesting that the sclera has anisotropic biomechanical properties. Our results show that OCE is an effective method for evaluating the mechanical properties of the sclera, and reveals a new area for our future work.
机译:巩膜的生物力学特性可以提供有关眼部疾病进展和病因的关键信息。例如,眼内压升高是青光眼最常见的危险因素之一,并可能在后眼组织(例如巩膜)中引起病理性变形,从而可能损坏这些重要组织。先前的工作已使用诸如充气测试等技术评估了巩膜对整体移位的生物力学响应。但是,这些方法无法提供本地化的生物力学评估。在这项试验工作中,我们利用声辐射力在新鲜猪眼(n = 2)的后巩膜组织中原位诱导了低振幅(<10μm)的弹性波。使用相敏光学相干弹性成像系统(PhS-OCE)在8 mm的区域内检测到使用超声换能器引起的波传播。弹性成像测量是在各种人工控制的眼内压(IOP)下进行的。在将IOP设置为10 mmHg进行首次测量之前,已对其进行了预循环。随后对每个样品分别在20 mmHg和30 mmHg下进行测量。结果显示,巩膜的硬度随IOP的增加而增加。此外,我们观察到了基于方向的弹性变化,表明巩膜具有各向异性的生物力学特性。我们的结果表明,OCE是评估巩膜力学性能的有效方法,并为我们的未来工作揭示了一个新领域。

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