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仿生眼系统模拟微流结构和眼内压用于青光眼手术训练。

Bionic eye system mimicking microfluidic structure and intraocular pressure for glaucoma surgery training.

机构信息

Department of Mechanical Engineering, School of Engineering, The University of Tokyo, Bunkyo, Tokyo, Japan.

NIDEK Co., Ltd., Gamagori, Aichi, Japan.

出版信息

PLoS One. 2022 Jul 11;17(7):e0271171. doi: 10.1371/journal.pone.0271171. eCollection 2022.

Abstract

Among increasing eye diseases, glaucoma may hurt the optic nerves and lead to vision loss, the treatment of which is to reduce intraocular pressure (IOP). In this research, we introduce a new concept of the surgery simulator for Minimally Invasive Glaucoma Surgery (MIGS). The concept is comprised of an anterior eye model and a fluidic circulatory system. The model made of flexible material includes a channel like the Schlemm's canal (SC) and a membrane like the trabecular meshwork (TM) covering the SC. The system can monitor IOP in the model by a pressure sensor. In one of the MIGS procedures, the TM is cleaved to reduce the IOP. Using the simulator, ophthalmologists can practice the procedure and measure the IOP. First, considering the characteristics of human eyes, we defined requirements and target performances for the simulator. Next, we designed and manufactured the prototype. Using the prototype, we measured the IOP change before and after cleaving the TM. Finally, we demonstrated the availability by comparing experimental results and target performances. This simulator is also expected to be used for evaluations and developments of new MIGS instruments and ophthalmic surgery robots in addition to the surgical training of ophthalmologists.

摘要

在不断增加的眼部疾病中,青光眼可能会损害视神经并导致视力丧失,其治疗方法是降低眼内压(IOP)。在这项研究中,我们引入了微创青光眼手术(MIGS)手术模拟器的新概念。该概念包括一个前眼部模型和一个流体循环系统。由柔性材料制成的模型包括类似于施莱姆氏管(SC)的通道和覆盖 SC 的类似于小梁网(TM)的膜。该系统可以通过压力传感器监测模型中的 IOP。在 MIGS 手术之一中,TM 被切开以降低 IOP。使用模拟器,眼科医生可以练习该手术并测量 IOP。首先,考虑到人眼的特点,我们为模拟器定义了要求和目标性能。接下来,我们设计并制造了原型。使用该原型,我们测量了切开 TM 前后的 IOP 变化。最后,我们通过比较实验结果和目标性能证明了其可用性。除了眼科医生的手术培训外,该模拟器还预计可用于评估和开发新的 MIGS 器械和眼科手术机器人。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c725/9273099/1800453e80ca/pone.0271171.g001.jpg

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