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视网膜神经节细胞对小鼠视网膜电图的作用。

Contribution of retinal ganglion cells to the mouse electroretinogram.

作者信息

Smith Benjamin J, Wang Xu, Chauhan Balwantray C, Côté Patrice D, Tremblay François

出版信息

Doc Ophthalmol. 2014 Jun;128(3):155-68. doi: 10.1007/s10633-014-9433-2.

Abstract

PURPOSE

To quantify the direct contribution of retinal ganglion cells (RGCs) on individual components of the mouse electroretinogram (ERG).

METHODS

Dark- and light-adapted ERGs from mice 8 to 12 weeks after optic nerve transection (ONTx, n=14) were analyzed through stimulus response curves for a- and b-waves, oscillatory potentials (OPs), positive and negative scotopic threshold response (p/n STR), and the photopic negative response (PhNR) and compared with unoperated and sham-operated controls, as well as to eyes treated with 6-cyano-7-nitroquinoxaline-2,3-dion (CNQX).

RESULTS

We confirmed in mice that CNQX intravitreal injection reduced the scotopic a-wave amplitude at high flash strength, confirming a post-receptoral contribution to the a-wave. We found that ONTx, which is more specific to RGCs, did not affect the a-wave amplitude and implicit time in either photopic or scotopic conditions while the b-wave was reduced. Both the pSTR and nSTR components were reduced in amplitude, with the balance between the two components resulting in a shortening of the nSTR peak implicit time. On the other hand, amplitude of the PhNR was increased while the OPs were minimally affected.

CONCLUSION

With an intact a-wave demonstrated following ONTx, we find that the most robust indicators of RGC function in the mouse full-field ERG were the STR components.

摘要

目的

量化视网膜神经节细胞(RGCs)对小鼠视网膜电图(ERG)各个成分的直接贡献。

方法

对视神经横断(ONTx,n = 14)后8至12周小鼠的暗适应和明适应ERG,通过a波和b波、振荡电位(OPs)、正负暗视阈值反应(p/n STR)以及明视负反应(PhNR)的刺激反应曲线进行分析,并与未手术和假手术对照组以及用6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)处理的眼睛进行比较。

结果

我们在小鼠中证实,玻璃体内注射CNQX在高闪光强度下降低了暗视a波振幅,证实了a波存在感受器后成分的贡献。我们发现,对RGCs更具特异性的ONTx,在明视或暗视条件下均不影响a波振幅和隐含时间,而b波降低。pSTR和nSTR成分的振幅均降低,两者之间的平衡导致nSTR峰值隐含时间缩短。另一方面,PhNR的振幅增加,而OPs受影响最小。

结论

ONTx后a波完整,我们发现在小鼠全视野ERG中,RGC功能最可靠的指标是STR成分。

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