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Ultrasonic determination of laser manipulated changes in the elastic property of the intraocular lens

机译:超声波测定人工晶状体弹性性能的激光操纵​​变化

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We propose using ultrasound to monitor the elastic property of the intraocular lens as manipulated by a femtosecond pulsed laser. To demonstrate this method, a lens and its zonules are extracted from a postmortem human eye globe. Free ends of the zonules are attached to an iris-like mechanical device that simulates accommodation muscles. The device and its attached lens are placed in a saline bath and scanned with an ultrasound microscope that uses a 50 MHz center frequency transducer with a 3 mm focus and f/# of 1.88. Thickness cross section images are produced for a lens in the relaxed state and at a radial deformation. Speckle within the lens is faint, but the lens capsule has a bright specular reflection. We can discern the composite elastic property of a lens by examining change in curvature of the anterior surface of the capsule for a given deformation. After measuring change in curvature, a loose grid of voids is created in the lens by a femtosecond pulsed laser. Change in curvature is then measured again. The lasered lens has greater change in curvature indicating greater tissue compliance. Results are consistent with what is expected considering a simple model of the lens system where capsule and media are parallel springs in series with zonules. This study indicates that ultrasound can monitor intraocular lens stiffness as manipulated by femtosecond laser microsurgery.
机译:我们建议使用超声波监测由飞秒脉冲激光器操纵的人工晶状体的弹性特性。为了证明这种方法,从后期的人眼球蛋糕中提取晶状体及其Zonules。 Zonules的自由端连接到类似的虹膜机械装置,模拟容纳肌肉。将器件及其附加镜头置于盐水浴中,并用超声显微镜扫描,使用50 MHz中心频率传感器,具有3毫米的焦点和1.88的F /#。厚度横截面图像用于放松状态的透镜和径向变形。镜片内的斑点是微弱的,但镜头胶囊具有鲜艳的镜面反射。我们可以通过检查胶囊前表面的曲率变形来辨别镜片的复合弹性特性。在测量曲率的变化之后,通过飞秒脉冲激光在镜片中产生松散的空隙网格。然后再测量曲率的变化。激光透镜在曲率下具有更大的变化,表明组织顺应性更大。结果与考虑到镜头系统的简单模型的预期一致,其中胶囊和介质是与Zonules串联的平行弹簧。本研究表明,超声波可以监测由飞秒激光微型手术操纵的人工晶状体刚度。

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