Chan Ho-Lung, Siu Andrew W
Department of Optometry and Radiography, The Hong Kong Polytechnic University, Kowloon, Hong Kong SAR, China.
Clin Exp Optom. 2003 Sep;86(5):317-22. doi: 10.1111/j.1444-0938.2003.tb03127.x.
Multifocal electroretinography (mfERG) is a sensitive technique to probe retinal function topographically. Various conditions such as macular degeneration decrease the first-order kernel (K1) response magnitude of mfERG. Previous studies have given inconsistent results on the effect of optical defocus due to poor controls. This study investigated the effect of optical defocus on the K1 response of the central retina using a well-controlled method.
Twenty subjects were recruited to undergo mfERG measurement using the VERIS 4.0 system. A four millimetre artificial pupil was fitted before each fully-dilated right eye, optically corrected for the viewing distance. The implicit times and response amplitudes of n1 (first negative trough) and p1 (first positive peak) under three different optical defocus conditions (zero dioptres, +1.00 D and +3.00 D) were measured.
The implicit times of n1 and p1 did not demonstrate any significant variation from the central macula to para-macula under different optical defocus conditions. The response amplitude of n1 did not show any changes from the central macula to para-macula but the response amplitude of the central macular p1 showed a significant reduction by 12 per cent under +1.00 D defocus and +3.00 D defocus.
Optical defocus causes mild reduction in mfERG at the central macula but there are no significant changes in the periphery. A full optical correction is recommended for mfERG measurement to minimise the reduction of the macular response due to optical defocus.
多焦视网膜电图(mfERG)是一种用于地形图探测视网膜功能的敏感技术。诸如黄斑变性等各种病症会降低mfERG的一阶核(K1)反应幅度。由于控制不佳,先前的研究在光学散焦的影响方面给出了不一致的结果。本研究使用一种控制良好的方法调查了光学散焦对中央视网膜K1反应的影响。
招募了20名受试者,使用VERIS 4.0系统进行mfERG测量。在每只充分散瞳的右眼之前安装一个4毫米的人工瞳孔,并针对观察距离进行光学矫正。测量了三种不同光学散焦条件(零屈光度、+1.00 D和+3.00 D)下n1(第一个负波谷)和p1(第一个正波峰)的潜伏时间和反应幅度。
在不同光学散焦条件下从中央黄斑到黄斑旁区域,n1和p1的潜伏时间未显示出任何显著变化。从中央黄斑到黄斑旁区域,n1的反应幅度未显示出任何变化,但在+1.00 D散焦和+3.00 D散焦下,中央黄斑p1的反应幅度显著降低了12%。
光学散焦会导致中央黄斑处的mfERG轻度降低,但周边区域无显著变化。建议在进行mfERG测量时进行完全光学矫正,以尽量减少由于光学散焦导致的黄斑反应降低。