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人类视网膜中的神经元适应性:关于暗适应和中间视觉背景照明下单振荡反应的研究

Neuronal adaptation in the human retina: a study of the single oscillatory response in dark adaptation and mesopic background illumination.

作者信息

Lundström Anna-Lena, Wang Ling, Wachtmeister Lillemor

机构信息

Department of Clinical Sciences/Ophthalmology, Umeå University, Umeå, Sweden.

出版信息

Acta Ophthalmol Scand. 2007 Nov;85(7):756-63. doi: 10.1111/j.1600-0420.2007.00935.x. Epub 2007 May 4.

Abstract

PURPOSE

The single oscillatory response in complete dark adaptation (DA) and the effect of mesopic illumination were studied in order to investigate the behaviour of the neuronal adaptation system as reflected in the oscillatory potentials (OPs) of the electroretinogram (ERG).

METHODS

The rapid oscillatory and slow components (a- and b-waves) of single ERGs were simultaneously recorded in nine healthy, young subjects in response to first flash after both DA of 45 mins and light adaptation to a steady background light (BGL) of low mesopic intensity.

RESULTS

Two low-amplitude oscillatory peaks were present in the single response to the first flash recorded in DA. There was no increase in the summed amplitudes of the OPs (SOP) when recorded in the single response to the first flash in mesopic BGL. However, the morphology of the oscillatory response altered. The first OP was reduced and a third oscillatory peak appeared.

CONCLUSIONS

We conclude that early, scotopically related OPs may indeed be activated in the single response to the first flash in DA (i.e. without using conditioning flashes). Secondly, on its own, adaptation to mesopic BGL does not seem to trigger enhancement of the overall oscillatory response. The altered single oscillatory response to the first flash apparent in the mesopic BGL comprises a third cone-associated OP and seems to reflect a reorganization of the retinal microcircuitry from a predominantly rod-activated system to one of mixed rod/cone neuronal activity in the inner part of the retina at the level at which individual OPs have their respective origins.

摘要

目的

研究完全暗适应(DA)中的单次振荡反应以及中间视觉光照的影响,以探究视网膜电图(ERG)振荡电位(OPs)所反映的神经元适应系统的行为。

方法

对9名健康年轻受试者在45分钟暗适应后以及光适应至低中间视觉强度的稳定背景光(BGL)后,对首次闪光的单次ERG的快速振荡和慢成分(a波和b波)进行同步记录。

结果

在暗适应中记录的对首次闪光的单次反应中出现了两个低振幅振荡峰。在中间视觉BGL下对首次闪光的单次反应中记录时,OPs的总和振幅(SOP)没有增加。然而,振荡反应的形态发生了改变。第一个OP降低,并且出现了第三个振荡峰。

结论

我们得出结论,在暗适应中对首次闪光的单次反应(即不使用条件闪光)中,早期与暗视觉相关的OPs确实可能被激活。其次,单独适应中间视觉BGL似乎不会触发整体振荡反应的增强。在中间视觉BGL下对首次闪光明显改变的单次振荡反应包括第三个与视锥相关的OP,似乎反映了视网膜微电路从主要由视杆激活的系统重组为视网膜内部在各个OP起源水平上视杆/视锥神经元混合活动的系统。

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