Department of Biomedical Engineering, 337 Zachry Engineering Center, 3120 TAMU, Texas A&M University, College Station, TX 77843-3120, USA.
Exp Eye Res. 2009 Oct;89(4):575-80. doi: 10.1016/j.exer.2009.06.001. Epub 2009 Jun 11.
Several studies have quantified the mechanics of the normal lens capsule, motivated in large part by the need to understand better the mechanism of accommodation. In addition to this principal physiologic function, the lens capsule also plays a significant clinical role by housing the prosthetic lens implanted during cataract surgery. This procedure alters dramatically the mechanical environment of the capsule, which may modulate the errant behavior of lens epithelial cells that leads to capsular contraction and deposition of non-native matrix proteins. Although much is known about histological alterations within the post-surgical capsule, little is known about the altered mechanics. We performed uniaxial mechanical tests on normal and post-surgical human anterior lens capsules and found, for the first time, that cataract surgery leads to a significant stiffening of the capsule nearest the capsulorhexis edge. These data promise to be important for developing predictive tools capable of elucidating interactions between the post-surgical capsule and implant.
多项研究已经对正常晶状体囊的力学特性进行了量化,这在很大程度上是出于更好地理解调节机制的需要。除了这一主要的生理功能外,晶状体囊在白内障手术中植入人工晶状体时也具有重要的临床作用。该手术极大地改变了囊的力学环境,这可能会调节导致囊收缩和非天然基质蛋白沉积的晶状体上皮细胞的异常行为。尽管人们对术后囊内的组织学改变有了很多了解,但对力学改变却知之甚少。我们对正常和术后的人眼前晶状体囊进行了单轴力学测试,首次发现白内障手术会导致最靠近囊切开缘的囊显著变硬。这些数据对于开发能够阐明术后囊与植入物之间相互作用的预测工具将非常重要。