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带通滤波对视网膜电图振荡电位的影响。

The effects of bandpass filtering on the oscillatory potentials of the electroretinogram.

作者信息

Gauthier Mercedes, Gauvin Mathieu, Lina Jean-Marc, Lachapelle Pierre

机构信息

Department of Ophthalmology and Neurology-Neurosurgery, Research Institute of the McGill University Health Centre/Montreal Children's Hospital, 1001 Boul. Décarie, Glen Site, Block E, Program Mail Drop Point #EM03211 - Office #EM03238, Montréal, QC, H4A 3J1, Canada.

Département de Génie Électrique, École de Technologie Supérieure, Montréal, QC, Canada.

出版信息

Doc Ophthalmol. 2019 Jun;138(3):247-254. doi: 10.1007/s10633-019-09683-w. Epub 2019 Mar 7.

Abstract

PURPOSE

In order to study the OPs, the ERG signal must be filtered to eliminate the low-frequency waves known as the a- and b-waves. Unfortunately, the ISCEV ERG standard does not give clear guidelines on how to proceed apart from indicating that frequencies below 75 Hz should be filtered out when recording scotopic OPs, while no suggestions are offered for the photopic OPs. The purpose of this study was thus to characterize more extensively the effects of various digital filters on the photopic OP waveforms in order to suggest the most appropriate filtering method to record them.

METHODS

Filtered OPs (N = 9600 tracings) were extracted from a photopic ERG databank of 40 normal subjects [intensity: 4.4 cd s m; background: 30 cd m] using 240 different combinations of five digital filters types (Bessel; Butterworth; Elliptic; Chebyshev type 1 and 2), eight bandwidth ranges (50-300; 75-300; 100-300; 125-300; 50-1000; 75-1000; 100-1000; 125-1000 Hz), three filter orders (1, 2 and 5) and with/without phase lag corrections that were generated using MATLAB 2015b. The peak time and the percentage of OPs (sum of OP amplitudes on the b-wave amplitude) were calculated in the time domain (TD%OP).

RESULTS

The timing of the OPs was less affected than the amplitude by the different filters used. Depending on the filter used, the resulting OPs were either severely depressed (16.16% of broadband OP content) or slightly reduced (93.63%). The filters that most successfully eliminated the slow components of the ERG (i.e., < 12% of broadband value) were the Bessel, the Butterworth and the Chebyshev type 1 filters and out of the latter, the Butterworth filter was that which most faithfully reproduced the high-frequency OPs (i.e., > 96%).

CONCLUSION

Our results vividly demonstrate the need to better define the characteristics of the filter that is used to record the OPs as it does have a significant impact on the resulting waveform.

摘要

目的

为了研究振荡电位(OPs),必须对视网膜电图(ERG)信号进行滤波,以消除被称为a波和b波的低频波。不幸的是,国际临床视觉电生理学会(ISCEV)的ERG标准除了指出在记录暗视OPs时应滤除75Hz以下的频率外,没有给出关于如何进行操作的明确指导方针,而对于明视OPs则没有提供任何建议。因此,本研究的目的是更广泛地表征各种数字滤波器对明视OP波形的影响,以便提出记录它们的最合适滤波方法。

方法

使用五种数字滤波器类型(贝塞尔;巴特沃斯;椭圆;切比雪夫1型和2型)、八个带宽范围(50 - 300;75 - 300;100 - 300;125 - 300;50 - 1000;75 - 1000;100 - 1000;125 - 1000Hz)、三个滤波器阶数(1、2和5)以及有无相位滞后校正的240种不同组合,从40名正常受试者的明视ERG数据库[强度:4.4cd·s·m;背景:30cd·m]中提取滤波后的OPs(N = 9600条记录)。这些组合是使用MATLAB 2015b生成的。在时域中计算OPs的峰值时间和OPs的百分比(OP振幅总和与b波振幅的比值,即TD%OP)。

结果

与振幅相比,不同滤波器对OPs时间的影响较小。根据所使用的滤波器不同,得到的OPs要么严重衰减(占宽带OP含量的16.16%),要么略有降低(占93.63%)。最成功消除ERG慢成分(即<宽带值的12%)的滤波器是贝塞尔滤波器、巴特沃斯滤波器和切比雪夫1型滤波器,其中巴特沃斯滤波器最能忠实地重现高频OPs(即>96%)。

结论

我们的结果清楚地表明,需要更好地定义用于记录OPs的滤波器的特性,因为它确实会对最终的波形产生重大影响。

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