Wei Huidong, Wolffsohn James S, Gomes de Oliveira Otavio, Davies Leon N
College of Health and Life Sciences, Aston University, Birmingham B4 7ET, UK.
Rayner Intraocular Lenses Limited, Worthing BN14 8AQ, UK.
Polymers (Basel). 2021 Oct 15;13(20):3552. doi: 10.3390/polym13203552.
Presbyopia is a common eye disorder among aged people which is attributed to the loss of accommodation of the crystalline lens due to the increasing stiffness. One of the potential techniques to correct presbyopia involves removing the lens substance inside the capsule and replacing it with an artificial lens. The development of such devices, e.g., accommodating intraocular lenses (AIOLs), relies on the understanding of the biomechanical behaviour of the lens capsule and the essential design verification ex vivo. To mimic the eye's dynamic focusing ability (accommodation), an artificial lens capsule (ALC), from silicone rubber accompanied by a lens radial stretching system (LRSS) was developed. The ALC was manufactured to offer a dimension and deforming behaviour replicating the human lens capsule. The LRSS was calibrated to provide a radial stretch simulating the change of diameter of capsules during accommodating process. The biomechanical function of the ALC was addressed by studying its evolution behaviour and reaction force under multiaxial stretch from the LRSS. The study highlighted the convenience of this application by performing preliminary tests on prototypes of ophthalmic devices (e.g., AIOLs) to restore accommodation.
老花眼是老年人常见的眼部疾病,它是由于晶状体硬度增加导致调节能力丧失所致。矫正老花眼的一种潜在技术是去除囊袋内的晶状体物质,并用人工晶状体替代。此类装置(如可调节人工晶状体)的研发依赖于对晶状体囊袋生物力学行为的理解以及体外基本设计验证。为模拟眼睛的动态聚焦能力(调节),开发了一种由硅橡胶制成的人工晶状体囊袋(ALC),并配备了晶状体径向拉伸系统(LRSS)。制造的ALC在尺寸和变形行为上可复制人晶状体囊袋。对LRSS进行校准,以提供模拟调节过程中囊袋直径变化的径向拉伸。通过研究ALC在LRSS多轴拉伸下的演化行为和反作用力,探讨了其生物力学功能。该研究通过对眼科装置(如可调节人工晶状体)的原型进行初步测试以恢复调节能力,突出了此应用的便利性。