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Improving the quality of electroretinogram recordings using active electrodes

机译:使用主动电极提高电艺画记录的质量

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The aim of this study was to compare the quality of electroretinogram (ERG) recordings using a custom built active electrode with attached amplifier versus a standard (passive) ERG electrode. Scotopic and photopic ERG responses were recorded from five adult albino rabbits using a custom built active electrode on one eye and a passive electrode on the other. For the active electrode, the ERG-jet electrode (Universo S.A., La Chaux-DeFonds, Switzerland) was used as the transducer with the cable cut short and soldered directly to the input of a customized amplifier. The passive electrode was a standard ERG jet electrode. The signal to noise ratio and reproducibility of ERGS were compared. The noise was significantly lower in the active electrode compared to the passive electrode (p = 0.009) resulting in signals being recorded at lower stimulation strengths with the active electrode. The scotopic a-wave was significantly larger in the active electrode at all supra-threshold stimulation intensities (p 0.05) and the scotopic b-wave amplitudes were also higher in the active electrode at all supra-threshold stimulation intensities but was only statistically significant between -3.25 and 1 log cd.s.m(-2) (p 0.05). The photopic a- and b-wave amplitudes were also higher in the active electrode and statistically significant between -0.75 and 0.48 log cd.s.m(-2) for the a-wave and -1.25 to -1 log cd.s.m(- 2) for the b-wave (p 0.05). The infra-observer repeatability, inter-sessions reproducibility and reliability of the signals were better in the active electrode as evidenced by lower coefficient of variation (CV) and coefficient of repeatability (CR) with high infra-class correlation coefficient (ICC) of the a- and b-wave parameters of the active electrode. These findings suggest that the custom built active ERG electrode produces less noise than the passive electrode, allowing responses to be recorded at lower stimulation strengths. It produces greater signal amplitudes and improved reproducibility and is therefore a better device for investigating retinal function.
机译:本研究的目的是使用带有附加放大器的定制内置有源电极与标准(无源)ERG电极的定制电极进行比较电气图表(ERG)记录的质量。在另一只眼睛上使用定制的有源电极和另一个被动电极的定制内置有源电极从五个成年白蛋白兔记录了施力和光学侵蚀响应。对于有源电极,使用ERG-JET电极(Universo S.A.,La Chaux-Defonds,瑞士)用作电缆切割的换能器,直接焊接到定制放大器的输入。无源电极是标准ERG射流电极。比较了ERGS的信噪比和再现性。与无源电极(P = 0.009)相比,活性电极中的噪声显着较低,导致在用活性电极的较低刺激强度下记录信号。在所有Supra阈值刺激强度下的活性电极中的氨缺陷A波在所有Supra-阈值刺激强度下的活性电极中也较高,但仅统计学在-3.25和1 log cd.sm(-2)之间有显着显着性(P <0.05)。光学A和B波振幅在有源电极中也较高,并且对于A-Wave的-0.75和0.48±0.48°Cd.sm(-2)且-1.25至-1 log cd.sm( - 2 )对于B波(P <0.05)。在激活电极中,通过较低的较高的INFRA类相关系数(ICC)的变化系数(CV)和重复系数(CR)的变化系数(CV)和重复系数(ICC)的变化系数和重复系数(CR)系数和重复系数(ICC)的变化系数和重复系数(ICC)的变化系数和重复系数(CR)和可重复系数和可重复系数(CR)的差异相互较好地进行有源电极的A和B波参数。这些发现表明,定制的主动ERG电极产生比无源电极的噪声少,允许以较低的刺激强度记录响应。它产生更大的信号幅度和提高的再现性,因此是用于研究视网膜功能的更好的装置。

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