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多焦视觉诱发电位为莱伯遗传性视神经病变中源自视网膜中央的视神经纤维存在主要功能障碍提供了电生理证据。

Multifocal VEP provide electrophysiological evidence of predominant dysfunction of the optic nerve fibers derived from the central retina in Leber's hereditary optic neuropathy.

作者信息

Ziccardi Lucia, Parisi Vincenzo, Giannini Daniela, Sadun Federico, De Negri Anna Maria, Barboni Piero, La Morgia Chiara, Sadun Alfedo A, Carelli Valerio

机构信息

Neurophthalmology Unit, Fondazione G.B. Bietti- IRCCS, Via Livenza 3, 00198, Rome, Italy,

出版信息

Graefes Arch Clin Exp Ophthalmol. 2015 Sep;253(9):1591-600. doi: 10.1007/s00417-015-2979-1. Epub 2015 Mar 17.

Abstract

PURPOSE

To differentiate the bioelectrical cortical responses driven by axons from central and mid-peripheral retina in Leber's hereditary optic neuropathy (LHON) by using multifocal visual evoked potentials (mfVEP).

METHODS

Seventeen genetically confirmed LHON patients (33.35 ± 8.4 years, 17 eyes) and 22 age-matched controls (C) (38.2 ± 6.0 years, 22 eyes) were studied by mfVEP and optical coherence tomography. MfVEP P1 implicit time (P1 IT, ms) and response amplitude density of the N1-P1 components (N1-P1 RAD, nV/deg(2)) of the second order binary kernel were measured for five concentric retinal areas between the fovea and mid-periphery: 0-20 degrees (R1 to R5).

RESULTS

Mean mfVEP P1 ITs and N1-P1 RADs at all five foveal eccentricities were significantly different (p < 0.01) in LHON when compared to controls. In both groups, mean mfVEP responses obtained from R1 to R5 showed a progressive shortening of P1 ITs (linear fitting, LHON: r  = -0.95; C: r = -0.98) and decrease of N1-P1 RADs (exponential fitting, LHON: r (2) = 0.94; C: r (2) = 0.93). The slope of the linear fitting between mean mfVEP P1 ITs in the two groups was about three times greater in LHON than in controls (LHON: y = -13.33x +182.03; C: y = -4.528x +108.1). MfVEP P1 ITs detected in R1 and R2 (0-5 degrees) were significantly correlated (p < 0.01) with the reduction of retinal nerve fiber layer thickness of the temporal quadrant.

CONCLUSIONS

MfVEP identifies abnormal neural conduction along the visual pathways in LHON, discriminating a predominant involvement of axons driving responses from the central retina when compared to those serving the mid-peripheral retina.

摘要

目的

通过使用多焦视觉诱发电位(mfVEP)来区分莱伯遗传性视神经病变(LHON)中由中央和中周边视网膜轴突驱动的生物电皮层反应。

方法

对17例基因确诊的LHON患者(33.35±8.4岁,17只眼)和22例年龄匹配的对照组(C)(38.2±6.0岁,22只眼)进行mfVEP和光学相干断层扫描研究。测量中央凹和中周边之间五个同心视网膜区域(0-20度,R1至R5)的mfVEP P1潜伏期(P1 IT,毫秒)和二阶二元核的N1-P1成分的反应幅度密度(N1-P1 RAD,nV/deg²)。

结果

与对照组相比,LHON患者在所有五个中央凹偏心率处的平均mfVEP P1 IT和N1-P1 RAD均有显著差异(p<0.01)。在两组中,从R1到R5获得的平均mfVEP反应均显示P1 IT逐渐缩短(线性拟合,LHON:r=-0.95;C:r=-0.98),N1-P1 RAD降低(指数拟合,LHON:r²=0.94;C:r²=0.93)。两组之间平均mfVEP P1 IT的线性拟合斜率在LHON中比对照组大约大三倍(LHON:y=-13.33x +182.03;C:y=-4.528x +108.1)。在R1和R2(0-5度)检测到的mfVEP P1 IT与颞侧象限视网膜神经纤维层厚度的减少显著相关(p<0.01)。

结论

mfVEP可识别LHON患者视觉通路中的异常神经传导,与服务于中周边视网膜的轴突相比,可区分出驱动反应的中央视网膜轴突的主要受累情况。

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