Pinilla Cortés Laura, Burd Harvey John, Montenegro Gustavo A, D'Antin Justin Christopher, Mikielewicz Marek, Barraquer Rafael I, Michael Ralph
Institut Universitari Barraquer Universitat Autònoma de Barcelona, Barcelona, Spain.
Department of Engineering Science, University of Oxford, Oxford, United Kingdom.
Invest Ophthalmol Vis Sci. 2015 May;56(5):2926-32. doi: 10.1167/iovs.14-15744.
To explore alternative experimental protocols to investigate the biomechanical behavior of the crystalline lens and zonules using ex vivo stretching.
Radial stretching tests were conducted on the anterior segment (consisting of lens, zonules, ciliary body, and sclera) of four pairs of presbyopic human donor eyes. A simple mechanical model is used to describe the behavior of the anterior segment when tested in this way. Each pair of samples was initially stretched with the ciliary body intact. One sample was retested after cutting the ciliary body radially, and the other sample was retested after removing the lens.
The external forces needed to stretch the sample with the ciliary body intact were significantly greater than for the tests in which the ciliary body had been cut. The forces measured with the ciliary body intact and lens in situ were comparable to the sum of the forces measured in the tests in which the ciliary body had been cut (lens in situ) and the forces measured in the tests on the intact ciliary body with the lens removed.
When stretching tests are conducted on the anterior segment, significant circumferential tensions develop in the ciliary body. This means that the forces applied to the lens and zonules cannot be related directly to the forces applied by the external loading system. If radial cuts are introduced in the ciliary body prior to testing, however, then this difficulty does not arise.
探索替代实验方案,以利用离体拉伸研究晶状体和悬韧带的生物力学行为。
对四对老视人供体眼的前段(由晶状体、悬韧带、睫状体和巩膜组成)进行径向拉伸试验。使用一个简单的力学模型来描述以这种方式测试时前段的行为。每对样本最初在睫状体完整的情况下进行拉伸。一个样本在径向切断睫状体后重新测试,另一个样本在移除晶状体后重新测试。
在睫状体完整的情况下拉伸样本所需的外力明显大于睫状体已被切断的测试。在睫状体完整且晶状体在位时测量的力与在睫状体已被切断(晶状体在位)的测试中测量的力以及在移除晶状体的完整睫状体测试中测量的力之和相当。
在前段进行拉伸试验时,睫状体中会产生显著的周向张力。这意味着施加到晶状体和悬韧带上的力不能直接与外部加载系统施加的力相关。然而,如果在测试前在睫状体中引入径向切口,那么这个困难就不会出现。