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Ultrasound biomicroscopic analysis of pseudophakic pupillary block glaucoma induced by Soemmerings ring

机译:Soemmering环引起的假晶状体瞳孔阻滞性青光眼的超声生物显微镜分析

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摘要

AIM—To perform ultrasound biomicroscopic analysis of pseudophakic pupillary block glaucoma induced by lens capsule and a Soemmering's ring and its resolution, and to elucidate the pathophysiology of this glaucoma.
METHODS—A woman with pseudophakic pupillary block glaucoma underwent successful neodymium:YAG (Nd:YAG) laser photodisruption of the lens capsule through a laser iridotomised coloboma with resolution of the pupillary block. The Humphrey ultrasonic biomicroscope model 840 was employed to observe the anterior segment before and after laser photodisruption.
RESULTS—Ultrasound biomicroscopic examination revealed the intraocular lens (IOL) was displaced forward, shallowing the central anterior chamber. The anterior hyaloid face was relatively posterior to the posterior capsule. The iris was in apposition to the anterior capsule, which was in touch with the IOL optics. A massive Soemmering's ring, which extended from the IOL optics to the ciliary processes, was displaced anteriorly. The Soemmering's ring consisted of several tightly packed layers. The ciliary processes rotated anteriorly. After Nd:YAG laser photodisruption of the capsule, ultrasound biomicroscopic images showed the resolution of the pupillary block and the anterior rotation of the ciliary process. The Soemmering's ring moved posteriorly, and the layers in the ring became loose.
CONCLUSIONS—A massive Soemmering's ring may one of potential causes of pupillary block after cataract surgery. Ultrasound biomicroscopy is potentially useful as a non-invasive diagnostic technique for clinical diagnosis and differentiation between Soemmering's ring induced pupillary block glaucoma and other forms of pupillary block.

机译:目的:对晶状体囊和Soemmering环引起的假晶状体眼瞳孔阻滞性青光眼进行超声生物显微镜分析,并阐明该青光眼的病理生理。 YAG(Nd:YAG)通过激光虹膜切开的淋巴瘤对晶状体囊进行光致破裂,并伴有瞳孔阻滞。汉弗莱(Humphrey)超声生物显微镜840型用于观察激光光破裂前后的前段。
结果-超声生物显微镜检查显示眼内透镜(IOL)向前移位,使中央前房变浅。透明玻璃体前脸相对于后囊相对后。虹膜位于与前囊接触的位置,前囊与IOL光学器件接触。从IOL光学镜延伸到睫状突的巨大Soemmering环向前移位。 Soemmering的戒指由几个紧密堆积的层组成。睫状突向前旋转。 Nd:YAG激光光胶囊破裂后,超声生物显微镜图像显示瞳孔阻滞的分辨率和睫状突的前旋转。 Soemmering环向后移动,并且环中的各层变松散。
结论—巨大的Soemmering环可能是白内障手术后瞳孔阻塞的潜在原因之一。超声生物显微镜技术可作为一种非侵入性诊断技术,用于临床诊断和区分Soemmering环诱发的瞳孔阻滞性青光眼和其他形式的瞳孔阻滞。

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