Bradford School of Optometry and Vision Sciences, University of Bradford, UK.
Ophthalmic Physiol Opt. 2010 Sep;30(5):503-10. doi: 10.1111/j.1475-1313.2010.00758.x.
We recorded L- and M-cone isolating ERGs from human subjects using a silent substitution technique at temporal rates of 12 and 30 Hz. These frequencies isolate the activity of cone-opponent and non-opponent post-receptoral mechanisms, respectively. ERGs were obtained using a sequence of stimuli with different spatial configurations comprising; (1) circular stimuli of different sizes which increased in 10° steps up to 70°diameter, or (2) annular stimuli with a 70° outer diameter but with different sized central ablations from 10° up to 60°. L- and M-cone isolating ERGs were obtained from five colour normal subjects using a DTL fibre electrode. Fourier analysis of the ERGs was performed and we measured the amplitude of the first harmonic of the response. For 12 Hz ERGs the L:M cone response amplitude ratio (L:M(ERG)) was close to unity and remained stable irrespective of the spatial configuration of the stimulus. The maintenance of this balanced ratio points to the existence of cone selective input across the human retina for the L-M cone opponent mechanism. For 30 Hz the L:M(ERG) ratio was greater than unity but varied depending upon which region of the retina was being stimulated. This variation we consider to be a consequence of the global response properties of M-cone ERGs rather than representing a real variation in L:M cone ratios across the retina.
我们使用静默替换技术,在 12 Hz 和 30 Hz 的时间频率下,从人类受试者中记录 L 和 M 锥体分离的 ERG。这些频率分别分离了锥体对抗和非对抗的受体后机制的活性。ERG 通过一系列具有不同空间配置的刺激序列获得,包括:(1)不同大小的圆形刺激,其大小以 10°的步长增加到 70°直径,或(2)70°外径的环形刺激,但中央消融的大小从 10°到 60°不等。使用 DTL 纤维电极从五个颜色正常的受试者中获得 L 和 M 锥体分离的 ERG。对 ERG 进行傅里叶分析,并测量响应的第一谐波的幅度。对于 12 Hz 的 ERG,L:M 锥体响应幅度比(L:M(ERG))接近 1 且保持稳定,与刺激的空间配置无关。这种平衡比的维持表明,对于 L-M 锥体对抗机制,存在跨越人视网膜的锥体选择性输入。对于 30 Hz,L:M(ERG)比大于 1,但取决于被刺激的视网膜区域而变化。我们认为这种变化是 M 锥体 ERG 的全局响应特性的结果,而不是代表视网膜上 L:M 锥体比的真实变化。