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Current source density analysis of linear and non-linear components of the primate electroretinogram.

机译:灵长类视网膜电图线性和非线性成分的电流源密度分析。

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摘要

1. We have used the method of current source density analysis to locate the generators of harmonic electroretinogram (ERG) responses to contrast-modulated pattern and uniform-field stimuli in the primate retina. 2. Sinusoidal steady-state analysis was used, with a stimulus temporal frequency of 8 Hz. Fundamental and second-harmonic response components were measured for the uniform-field response. The second harmonic of the average of contrast-reversal pattern responses obtained at a series of spatial phases was also determined in the same experiments. In addition, retinal tissue resistance was measured. All of these measurements were obtained at a series of equally spaced depths in the retina. 3. Retinal resistivity was not observed to vary systematically with depth. In addition, any plausible undetected inhomogeneities of resistivity with depth were found to slightly affect the relative magnitudes of estimated current sources and sinks, but to have little effect on their localization. 4. In a given penetration, the phase lag of each harmonic component was relatively constant with depth in most cases; however the magnitude of this phase lag sometimes varied in different penetrations. To compare data from different penetrations, the constant phase lag for each harmonic was estimated, and the response data phase-shifted so as to bring all data into a standard (cosine) phase. 5. The resulting current source density analyses were found to be quite consistent in overall form for different penetrations and in different animals. These data were averaged to obtain a final estimate of the depth profiles for generators of different ERG components. 6. The uniform-field fundamental response was found to have a predominant source-sink pair in the distal half of the retina (receptor layer to outer plexiform layer). The pattern (second-harmonic) response generators had a quite different depth profile, consisting mainly of a source-sink pair in the proximal 20% of the retina (encompassing the nerve fibre layer to the middle of the inner plexiform layer). The uniform-field second-harmonic response showed a current source density (CSD) depth profile with multiple sources/sinks, as if it contained contributions from the other two.
机译:1.我们已经使用电流源密度分析的方法来定位谐波电视网膜图(ERG)对灵长类动物视网膜中对比度调制的模式和均匀场刺激的响应的发生源。 2.使用正弦稳态分析,刺激时间频率为8 Hz。测量了基本和二次谐波响应分量的均匀场响应。在相同的实验中,还确定了在一系列空间相位上获得的对比度反转模式响应平均值的二次谐波。另外,测量了视网膜组织阻力。所有这些测量都是在视网膜中一系列等距的深度处获得的。 3.未观察到视网膜电阻率随深度系统变化。另外,发现任何可能的未发现的深度电阻率不均一性都会稍微影响估计的电流源和电流阱的相对大小,但对其位置几乎没有影响。 4.在给定的穿透深度下,大多数情况下每个谐波分量的相位滞后随深度而相对恒定;但是,此相位滞后的幅度有时会因不同的穿透而变化。为了比较来自不同穿透力的数据,估计了每个谐波的恒定相位滞后,并对响应数据进行了相移,以使所有数据进入标准(余弦)相。 5.结果表明,对于不同的穿透力和不同的动物,总体上的电流源密度分析在整体形式上是非常一致的。将这些数据取平均值,以获得不同ERG组件的发生器的深度剖面的最终估计。 6.发现均匀场基本响应在视网膜的远端一半(受体层至外部丛状层)中具有主要的源-宿对。模式(二次谐波)响应生成器具有完全不同的深度分布,主要由视网膜近端20%(包括神经纤维层到内部丛状层的中间)中的源-汇对组成。均匀场二次谐波响应显示了具有多个源/汇的电流源密度(CSD)深度剖面,好像它包含了其他两个源/汇的贡献一样。

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