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Axial elongation measured by long scan depth optical coherence tomography during pilocarpine-induced accommodation in intraocular lens-implanted eyes

机译:在毛细支芸豆角人工晶状体植入的眼中调节期间通过长扫描深度光学相干断层扫描测量的轴伸长率

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摘要

We used an ultra-long scan depth optical coherence tomography (UL-OCT) system to investigate changes in axial biometry of pseudophakic eyes during pilocarpine- induced accommodation. The right eyes from 25 healthy subjects (age range 49 to 84 years) with an intraocular lens (IOL) were imaged twice in the non-accommodative and the accommodative states. A custom-built UL-OCT instrument imaged the whole eye. Then accommodation was induced by two drops of 0.5% pilocarpine hydrochloride separated by a 5-minute interval. Following the same protocol, images were acquired again 30 minutes after the first drop. The central corneal thickness (CCT), anterior chamber depth (ACD), IOL thickness (IOLT), and vitreous length (VL) were obtained using custom automated software. The axial length (AL) was calculated by summing the CCT, ACD, IOLT, and VL. With accommodation, ACD increased by +0.08 ± 0.09 mm, while the VL decreased by −0.04 ± 0.09 mm (paired t-test each, P<0.05). CCT and IOLT remained constant during accommodation (P > 0.05). The non-accommodative AL was 23.47 ± 0.93 mm, and it increased by +0.04 ± 0.04 mm after accommodation (P<0.01). The AL increased and the IOL moved backward during pilocarpine-induced accommodation in pseudophakic eyes.
机译:我们使用超长扫描深度光学相干断层扫描(UL-OCT)系统来研究毛细支配体诱导的适应性过程中假晶状体眼的轴向生物学特征的变化。 25位健康受试者(年龄范围49至84岁)的右眼用人工晶状体(IOL)进行了两次成像,分别处于非适应性和适应性状态。定制的UL-OCT仪器使整个眼睛成像。然后通过以5分钟间隔分开的两滴0.5%毛果芸香碱盐酸盐诱导适应。遵循相同的协议,在第一次滴下30分钟后再次获取图像。使用定制的自动化软件获得中央角膜厚度(CCT),前房深度(ACD),IOL厚度(IOLT)和玻璃体长度(VL)。轴向长度(AL)是通过将CCT,ACD,ILT和VL相加得出的。通过调节,ACD增加了+0.08±0.09 mm,而VL减少了-0.04±0.09 mm(配对t检验,P <0.05)。在适应过程中,CCT和IOLT保持恒定(P> 0.05)。非适应性AL为23.47±0.93 mm,适应后增加了±0.04±0.04 mm(P <0.01)。假性晶状体眼在毛果芸香碱诱导的适应期间,AL升高且IOL向后移动。

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