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心脏节律同步纤维蛋白瓣在青光眼引流管中的作用:心跳作为房水的引流泵:一例报告。

Heart rhythm-synchronized fibrin flap in a glaucoma tube shunt: The heartbeat acts as a drainage pump for the aqueous humor: A case report.

机构信息

Department of Ophthalmology, Tsukazaki Hospital, Himeji, Hyogo.

Department of Technology and Design Thinking for Medicine, Hiroshima University Graduate School of Biomedical and Health Sciences, Hiroshima, Japan.

出版信息

Medicine (Baltimore). 2021 Jul 9;100(27):e26603. doi: 10.1097/MD.0000000000026603.

Abstract

RATIONALE

The amount of aqueous humor that is constantly produced by the ciliary processes and the equal amount that flows out through the trabecular meshwork via the drainage angle or through the uveoscleral route is very small (2-3 μg/min each), representing approximately 1% of the content of the anterior chamber; therefore, it is challenging to visualize its flow.

PATIENT CONCERNS

A 69-year-old man who had high intraocular pressure (IOP) (>20 mm Hg) with the maximum glaucoma eyedrop dose and presented with severe visual field loss (Humphrey Field Analyzer 30-2: -26.32 dB) had been implanted with a 350-mm2 Baerveldt tube of the aqueous chamber type for refractory open-angle glaucoma. The IOP ultimately decreased (<15 mm Hg) with no need for glaucoma eyedrops.

DIAGNOSES

After the procedures, a fibrin membrane repeatedly formed on the anterior surface of the intraocular lens.

INTERVENTIONS

This issue was resolved by two rounds of neodymium-doped yttrium aluminum granet (Nd:YAG) laser surgery and prescription steroidal eyedrops.

OUTCOMES

During the laser surgery, an unusual and unintended fibrin flap appeared at the opening of the Baerveldt tube; this flap moved synchronously with the heartbeat, as verified by checking the pulse at the radial artery of the wrist. The fibrin flap mimicked the behavior of a cardiac valve, and the aqueous humor and stray fibrin particles mimicked the blood in the chambers of the heart. Although the Baerveldt tube itself is an artificial instrument that is not present in normal human eyes, we hypothesize that our observation shows the fundamental mechanism of aqueous humor drainage.

LESSONS

This novel, vividly descriptive observation highlights the important role of the heartbeat as a drainage pump in aqueous humor flow dynamics and IOP homeostasis, which are treatment targets for glaucoma, the leading cause of blindness.

摘要

背景

睫状体通过小梁网的排水角或葡萄膜巩膜途径不断产生的房水的量和通过该途径流出的等量房水非常少(每侧 2-3μg/min),约占前房内容物的 1%;因此,其流动很难被可视化。

病例介绍

一名 69 岁男性,患有高眼压(>20mmHg),尽管使用了最大剂量的青光眼滴眼剂,但仍表现出严重的视野丧失(Humphrey Field Analyzer 30-2:-26.32dB),曾因难治性开角型青光眼植入了 350mm2 房水型 Baerveldt 管。最终,眼压下降(<15mmHg),无需使用青光眼滴眼剂。

诊断

手术后,眼内人工晶状体前表面反复形成纤维蛋白膜。

干预措施

通过两轮钕掺杂钇铝石榴石(Nd:YAG)激光手术和处方皮质类固醇滴眼剂解决了这个问题。

结果

在激光手术过程中,Baerveldt 管开口处出现了一个异常且意想不到的纤维蛋白瓣;该瓣随心跳同步移动,通过检查手腕桡动脉的脉搏可以证实这一点。纤维蛋白瓣的行为类似于心脏瓣膜,房水和游离的纤维蛋白颗粒类似于心脏腔室中的血液。尽管 Baerveldt 管本身是一种人工仪器,在正常的人眼中不存在,但我们假设我们的观察结果显示了房水引流的基本机制。

结论

这一新颖而生动的描述性观察强调了心跳作为房水流动动力学和眼压动态平衡的引流泵的重要作用,这是青光眼治疗的目标,青光眼是导致失明的主要原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f988/8270613/537e681f9514/medi-100-e26603-g001.jpg

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