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首页> 外文期刊>Cornea >Effect of shear stress on attachment of corneal endothelial cells in association with corneal endothelial cell loss after laser iridotomy.
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Effect of shear stress on attachment of corneal endothelial cells in association with corneal endothelial cell loss after laser iridotomy.

机译:激光虹膜切开术后剪切应力对角膜内皮细胞附着及角膜内皮细胞损失的影响。

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PURPOSE: Laser iridotomy often causes bullous keratopathy; however, the mechanism is unclear. We investigated whether changes in aqueous humor hydrodynamics after laser iridotomy have any role in corneal endothelial cell loss. MATERIALS AND METHODS: Porcine corneal endothelial cells were plated onto glass slides. Following 1 or 3 hours for adhesion, the endothelial cells were exposed to shear stresses (0.1-10 dyne/cm) for 15 minutes, and the number of detached cells was counted. In addition, the pressure and shear stress on corneal endothelial layer were calculated in a virtual model of laser iridotomy. RESULTS: The number of detached corneal endothelial cells increased with shear stresses in a dose-dependent manner. Significant increase of rate of detached corneal endothelial cells was observed at >0.3 dyne/cm after 1-hour attachment and at 1 dyne/cm after 3-hour attachment. The maximum pressure on corneal endothelial layer was 0.007 mm Hg, which is negligible compared with intraocular pressure. However, the maximum shear stress on the corneal endothelial layer could be> dyne/cm in some conditions of laser iridotomy. CONCLUSIONS: The resistance of corneal endothelial cell loss to shear stress is time dependent. Shear stress could be a cause of corneal endothelial cell loss in some conditions of laser iridotomy.
机译:目的:激光虹膜切开术常引起大疱性角膜病变;但是,机制尚不清楚。我们调查了激光虹膜切开术后房水流体动力学的变化是否对角膜内皮细胞损失有任何作用。材料与方法:将猪角膜内皮细胞铺在载玻片上。在粘附1或3小时后,将内皮细胞暴露于剪切应力(0.1-10达因/厘米)15分钟,并计数分离的细胞数。另外,在激光虹膜切开术的虚拟模型中计算了角膜内皮层上的压力和剪切应力。结果:随着剪切应力的增加,角膜内皮细胞的脱落量呈剂量依赖性。附着1小时后,> 0.3达因/厘米,附着3小时后,以1达因/厘米,观察到角膜内皮细胞脱落速率显着增加。角膜内皮层上的最大压力为0.007 mm Hg,与眼内压相比可以忽略不计。然而,在激光虹膜切开术的某些条件下,角膜内皮层上的最大剪切应力可能大于dyne / cm。结论:角膜内皮细胞损失对剪切应力的抵抗力是时间依赖性的。在激光虹膜切开术的某些情况下,剪切应力可能是角膜内皮细胞损失的原因。

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