人工眼植入物控制系统的检查

Aynur Jabiyeva, Rashad Khalilov Aynur Jabiyeva, Rashad Khalilov
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摘要

由于各种原因,失去一只眼睛的人可能会经历心理上的痛苦和痛苦。剜眼和内脏手术是最常用的方法来切除生病或受伤的眼睛。在外科医生摘除眼球后,患者通常会在眼眶组织中植入定制的植入物。为了防止插座看起来中空和凹陷,这取代了体积。一旦眼窝稳定下来,一个假体外壳——也被称为人造眼、玻璃眼或眼假体——就会被植入其中。眼部植入物可以机械地代替失去的眼睛。这个领域有了重大的发展。为了代替缺失的眼睛,我们研制了一个眼假体。从外形上看,这个假肢看起来很自然。然而,眼睛是静止的,或者只是稍微移动。本研究的目的是开发一个独立的眼运动系统,以使人工眼更真实地运动。自然眼球运动的检测是一个至关重要的问题。本研究包括眼动检测技术的概述。在此基础上,建立了基于融合的眼动检测方法。记录和存储的第一个方面是眼球运动。然后,在实验过程中,传感器阵列产生眼动信号,匹配规则产生眼位置。实验系统,融合技术,和早期发现涵盖了大部分的工作。关键词:传感器阵列,融合,人工眼,眼眶植入,眼控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EXAMINATION OF THE CONTROL SYSTEM OF AN ARTIFICIAL EYE IMPLANT
Due to various reasons, a person who is missing one eye may experience psychological as well as excruciating suffering. Enucleation and evisceration surgery are the most often used methods to remove a sick or injured eye. The patient is often fitted with a bespoke implant into the orbital tissues after the surgeon removes the eye. In order to keep the socket from looking hollow and depressed, this replaces volume. Once the socket has stabilized, a prosthetic shell—also known as an artificial eye, glass eye, or ocular prosthesis—is placed within. An ocular implant can mechanically replace the lost eye. There have been significant developments in this field. To replace the missing eye, an ocular prosthesis was developed. Physically, the prosthetic seems natural. The eye, however, is stationary or just slightly mobile. development of an independent ocular motor system is the objective of this study in order to give the artificial eye more realistic movement. The detection of natural eye movement is a crucial issue. This study includes an overview of eye movement detecting techniques. Then eye movement detection using the fusion approach is created. The first aspect that is recorded and stored is the eye movement. Then, during the experiment, the sensor array yields the eye movement signal, and the matching rule yields the eye position. The experimental system, fusion technology, and early findings are covered in the majority of this work. Keywords: Sensor array, fusion, artificial eye, orbital implant, and ocular control.
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