Suppr超能文献

[弥漫性和图形刺激下视网膜的振幅-频率特性以及闪烁和图形视网膜电图的新形式化特征]

[Amplitude-frequency characteristics of the retina under diffuse and pattern stimulation and new formalized signs of flicker and pattern electroretinogram].

作者信息

Zueva M V, Tsapenko I V, Kolosov O S, Vershinin D V, Korolenkova V A, Pronin A D

机构信息

Helmholtz National Medical Research Center of Eye Diseases, 14/19 Sadovaya-Chernogryazskaya St., Moscow, Russian Federation, 105062.

National Research University 'Moscow Power Engineering Institute', 14 Krasnokazarmennaya St., Moscow, Russian Federation, 111250.

出版信息

Vestn Oftalmol. 2019;135(6):17-26. doi: 10.17116/oftalma201913506117.

Abstract

UNLABELLED

The clinical sugnificance of electroretinogram interpretation depends heavily on the employed mathematical apparatus. Currently, conventional calculation of the amplitude and time parameters of electroretinogram (ERG) components and their relations (indices), as well as analysis of the frequency spectrum of the signal are becoming insufficient for interpretation of the obtained data. New approaches to diagnostics are currently being developed, using, among other things, expert systems, and neural network and simulation models.

PURPOSE

To obtain additional formalized signs of ERG responses to flicker and pattern stimuli by analyzing the amplitude-frequency characteristics of the retina.

MATERIAL AND METHODS

A photopic flicker ERG (FERG) and a transient pattern ERG (PERG) were recorded from healthy individuals and patients with glaucoma. Using the digitized FERG and PERG signals, the amplitude-frequency characteristics of the retina were studied. The results of diffuse and structured stimulation modeling in Matlab Simulink were used to identify the characteristics of retinal responses to rhythmic and pattern stimuli.

RESULTS

The amplitude-frequency characteristics (AFC) of the retina were obtained for the first time. They objectively reflect its ability to convert spectra of stimulating signals into spectra of recorded ERG responses. Using the results of modeling, diffuse flicker and pattern stimuli we have identified features of retinal response in Matlab Simulink. Based on a simplified simulation model, a negative component (baseline drift) was detected in a healthy person's PERG and its effect on the results of retinal AFC evaluation was investigated. Polynomial approximation procedure of retinal AFC was performed for the first time allowing the use of coefficients of approximating polynomials as new formalized signs in diagnostics.

CONCLUSION

AFC were shown to be an objective characteristic of retinal transfer properties, which depend on the type of stimuli acting on it, as well as on the etiology of the retinal disease.

摘要

未标注

视网膜电图解读的临床意义在很大程度上取决于所采用的数学方法。目前,对视网膜电图(ERG)各成分的幅度和时间参数及其关系(指标)进行常规计算,以及对信号频谱进行分析,对于解读所获得的数据已变得不够充分。目前正在开发新的诊断方法,其中包括使用专家系统、神经网络和模拟模型等。

目的

通过分析视网膜的幅度 - 频率特性,获得ERG对闪烁和图形刺激反应的额外形式化指标。

材料与方法

记录了健康个体和青光眼患者的明视闪烁视网膜电图(FERG)和瞬态图形视网膜电图(PERG)。利用数字化的FERG和PERG信号,研究了视网膜的幅度 - 频率特性。在Matlab Simulink中进行的漫射和结构化刺激建模结果,用于识别视网膜对节律性和图形刺激的反应特征。

结果

首次获得了视网膜的幅度 - 频率特性(AFC)。它们客观地反映了视网膜将刺激信号频谱转换为记录的ERG反应频谱的能力。利用建模结果,即漫射闪烁和图形刺激,我们在Matlab Simulink中识别出了视网膜反应的特征。基于一个简化的模拟模型,在健康人的PERG中检测到一个负成分(基线漂移),并研究了其对视网膜AFC评估结果的影响。首次对视网膜AFC进行了多项式逼近程序,使得可以将逼近多项式的系数用作诊断中的新形式化指标。

结论

AFC被证明是视网膜传递特性的客观特征,它取决于作用于视网膜的刺激类型以及视网膜疾病的病因。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验