IEEE Trans Biomed Eng. 2018 Dec;65(12):2781-2789. doi: 10.1109/TBME.2018.2816591. Epub 2018 Mar 19.
The information derived from the electroretinogram (ERG), especially with regard to local areas of retinal dysfunction or therapeutic rescue, can be enhanced by an increased understanding of the relationship between local retinal current sources and local ERG potentials measured at the cornea. A critical step in this direction is the development of a robust bioelectric field model of the ERG.
A finite-element model was created to simulate ERG potentials at the cornea resulting from physiologically relevant transretinal currents. A magnetic resonance image of a rat eye was segmented to define all major ocular structures, tissues were assigned conductivity values from the literature. The model was optimized to multi-electrode ERG (meERG) data recorded in healthy rat eyes, and validated with meERG data from eyes with experimental lesions in peripheral retina.
Following optimization, the simulated distribution of corneal potentials was in good agreement with measured values; residual error was comparable to the average difference of individual eyes from the measured mean. The model predicted the corneal potential distribution for eight eyes with experimental lesions with similar accuracy, and a measure of pre- to post-lesion changes in corneal potential distribution was well correlated with the location of the lesion.
An eye model with high anatomical accuracy was successfully validated against a robust dataset.
This model can now be used for optimization of ERG electrode design, and to support functional mapping of the retina from meERG data via solving the inverse bioelectric source problem.
通过深入了解局部视网膜电流源与在眼角膜测量的局部视网膜电图(ERG)电位之间的关系,可以增强从视网膜电图中获得的信息,尤其是在局部视网膜功能障碍或治疗效果方面。朝这个方向迈出的关键一步是开发一个稳健的视网膜电图生物电场模型。
创建了一个有限元模型,以模拟由生理相关的视网膜电流引起的眼角膜 ERG 电位。对大鼠眼球的磁共振图像进行分割,以定义所有主要的眼部结构,根据文献为组织分配电导率值。对模型进行了优化,使其与健康大鼠眼睛的多电极 ERG(meERG)数据相匹配,并使用外围视网膜实验性病变的 meERG 数据进行了验证。
在优化后,模拟的角膜电位分布与测量值吻合良好;残差与个体眼睛与测量平均值之间的平均差异相当。该模型对八只患有实验性病变的眼睛的角膜电位分布具有相似的预测精度,并且角膜电位分布的病变前后变化的度量与病变的位置高度相关。
成功地使用具有高度解剖学准确性的眼睛模型对稳健的数据集进行了验证。
现在可以使用该模型来优化 ERG 电极设计,并通过解决逆生物源问题来支持从 meERG 数据进行视网膜功能映射。