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青光眼眼压监测诊断应用的进展:综述

Advances in diagnostic applications for monitoring intraocular pressure in Glaucoma: A review.

作者信息

Sanchez Irene, Martin Raul

机构信息

Universidad de Valladolid, Departamento de Física Teórica, Atómica y Óptica, Paseo de Belén, 7, Campus Miguel Delibes, Valladolid 47011, Spain; Universidad de Valladolid, Instituto Universitario de Oftalmobiología Aplicada (IOBA), Paseo de Belén, 17, Campus Miguel Delibes, Valladolid 47011, Spain; Optometry Research Group, IOBA Eye Institute, School of Optometry, University of Valladolid, Valladolid 47011, Spain.

Universidad de Valladolid, Departamento de Física Teórica, Atómica y Óptica, Paseo de Belén, 7, Campus Miguel Delibes, Valladolid 47011, Spain; Universidad de Valladolid, Instituto Universitario de Oftalmobiología Aplicada (IOBA), Paseo de Belén, 17, Campus Miguel Delibes, Valladolid 47011, Spain; Optometry Research Group, IOBA Eye Institute, School of Optometry, University of Valladolid, Valladolid 47011, Spain; School of Health Professions, Plymouth University, Plymouth PL68BH, UK.

出版信息

J Optom. 2019 Oct-Dec;12(4):211-221. doi: 10.1016/j.optom.2018.12.003. Epub 2019 Aug 10.

Abstract

Continuous intraocular pressure (IOP) monitoring for improving glaucoma diagnosis and treatment has remained a challenge for the past 60 years because glaucoma is the second leading cause of irreversible blindness worldwide. Several devices with different measurement principles and recently developed biosensors with semiconductor materials offer exciting properties. However, none of these devices for continuous IOP monitoring have been fully integrated into clinical practice, primarily due to technical problems. This review summarizes state-of-the-art biosensors developed for IOP monitoring by explaining their basic functions and applications, the main technology (pressure transductors, piezoresistive sensors, capacitive sensors, and resonant sensors), measurement approach (noninvasive, minimally invasive or invasive (surgically implantable)), and telemetry characteristics. To provide updated information for clinicians and researchers, we also describe the advantages and limitations of the application of these new sensors to eye care management. Despite significant improvements in IOP biosensor technology, the accuracy of their measurements must be improved to obtain a clear equivalence with actual IOP (measured in units of mmHg) to facilitate their clinical application. In addition, telemetry systems may be simplified to prevent adverse outcomes for patients and to guarantee the safety of stored data.

摘要

在过去的60年里,持续监测眼内压(IOP)以改善青光眼的诊断和治疗一直是一项挑战,因为青光眼是全球不可逆失明的第二大主要原因。几种具有不同测量原理的设备以及最近开发的具有半导体材料的生物传感器具有令人兴奋的特性。然而,这些用于持续眼压监测的设备都没有完全融入临床实践,主要是由于技术问题。本综述通过解释其基本功能和应用、主要技术(压力传感器、压阻式传感器、电容式传感器和谐振传感器)、测量方法(非侵入性、微创或侵入性(手术植入))和遥测特性,总结了为眼压监测而开发的最新生物传感器。为了向临床医生和研究人员提供最新信息,我们还描述了这些新传感器在眼部护理管理应用中的优点和局限性。尽管眼压生物传感器技术有了显著改进,但其测量准确性仍需提高,以便与实际眼压(以毫米汞柱为单位测量)有明确的等效性,从而促进其临床应用。此外,遥测系统可能需要简化,以防止对患者产生不良后果,并保证存储数据的安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4ae/6978552/e5a968fa4327/gr1.jpg

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