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全视野视网膜电图之后,多焦视网膜电图的中央凹振幅更大。

Foveal amplitudes of multifocal electroretinograms are larger following full-field electroretinograms.

作者信息

Harrison Wendy, Osmotherly Kaila, Biancardi Nathan, Langston Jamison, Gray Russell, Kneip Taylor, Loveless Reese

机构信息

Arizona College of Optometry, Midwestern University, 19555 N 59th Ave, Glendale, AZ, 85308, USA.

College of Optometry, University of Houston, 4901 Calhoun St., Houston, TX, 77204, USA.

出版信息

Doc Ophthalmol. 2018 Dec;137(3):143-149. doi: 10.1007/s10633-018-9657-7. Epub 2018 Oct 10.

Abstract

PURPOSE

The clinical standards for multifocal electroretinograms (mfERG) call for adaption to normal room lighting before the mfERG begins. They specify that any assessments where bright lights are used, should be done after the mfERG to prevent excess stimulation of retinal cells. However, full-field electroretinograms (FFERG) are performed prior to mfERGs in some clinical settings. It is unclear from the literature whether the FFERG has an impact on the mfERG. This study seeks to examine the effect of the FFERG on the mfERG when performed sequentially.

METHODS

Thirty young healthy subjects (age 27.1 ± 3.5 years) were included. Patients reported for two visits and were fully dilated at both visits. At visit one, a FFERG was recorded (VERIS 6.2) using our clinical protocol which includes an ISCEV standard flash sequence; each flash condition was repeated 4-6 times. Following the FFERG, an mfERG was recorded using a 4-min m-sequence at near 100% contrast. At visit two, only the mfERG was recorded. A Burian-Allen contact lens electrode filled with celluvisc was used for all recordings. The two mfERGs were compared for foveal, peripheral, and overall implicit time (IT) and amplitudes (amp). Paired t tests were used to evaluate the data. Coefficient of variation and Bland-Altman analysis was also reported for this patient group.

RESULTS

There was a small but statistically significant difference in foveal amplitudes (amp) (p = 0.004) wherein the amp was larger following the FFERG stimuli. The mean difference was 11.1 nV/deg (100.9 nV vs 89.8 nV). There was no difference in foveal IT (p = 0.66). There was no difference in overall IT or amp when averaging the entire eye (p = 0.44 amp and p = 0.54 IT) or just evaluating the periphery (p = 0.87 amp and p = 0.051 IT). Bland-Altman analysis found a coefficient of repeatability overall was 1.57 ms (IT) and 10.7 nV/deg (amp).

CONCLUSIONS

The difference in foveal amplitude is likely the result of a small long-term cone adaptation, but further studies are needed. While it is statistically significant, the small difference is unlikely to be clinically important. These results should help increase clinical confidence in mfERG results when recorded following a FFERG.

摘要

目的

多焦视网膜电图(mfERG)的临床标准要求在mfERG开始前适应正常室内照明。标准规定,任何使用强光的评估都应在mfERG之后进行,以防止对视网膜细胞的过度刺激。然而,在一些临床环境中,全视野视网膜电图(FFERG)在mfERG之前进行。从文献中尚不清楚FFERG是否会对mfERG产生影响。本研究旨在探讨依次进行FFERG时其对mfERG的影响。

方法

纳入30名年轻健康受试者(年龄27.1±3.5岁)。患者进行两次就诊,两次就诊时均充分散瞳。在第一次就诊时,使用我们的临床方案记录FFERG(VERIS 6.2),该方案包括国际临床视觉电生理学会(ISCEV)标准闪光序列;每个闪光条件重复4 - 6次。在FFERG之后,使用4分钟的m序列在接近100%对比度下记录mfERG。在第二次就诊时,仅记录mfERG。所有记录均使用充满纤维素粘胶的Burian - Allen接触镜电极。比较两次mfERG的中央凹、周边和整体的潜伏时间(IT)及振幅(amp)。采用配对t检验评估数据。还报告了该患者组的变异系数和Bland - Altman分析结果。

结果

中央凹振幅(amp)存在微小但具有统计学意义的差异(p = 0.004),其中在FFERG刺激后amp更大。平均差异为11.1 nV/deg(100.9 nV对89.8 nV)。中央凹IT无差异(p = 0.66)。对整个眼睛进行平均时,整体IT或amp无差异(p = 0.44 amp和p = 0.54 IT),仅评估周边时也无差异(p = 0.87 amp和p = 0.051 IT)。Bland - Altman分析发现整体重复性系数为1.57 ms(IT)和10.7 nV/deg(amp)。

结论

中央凹振幅的差异可能是小的长期视锥细胞适应的结果,但需要进一步研究。虽然具有统计学意义,但微小差异在临床上可能并不重要。这些结果应有助于提高在FFERG之后记录mfERG时临床对mfERG结果的信心。

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