| Literature DB >> 29183292 |
Meng Gao1, Yi Wang1, Wu Liu2, LiMei Liu3, WeiYu Yan1, Ju Liu4, KeGao Liu1, XinXin Liu5, YanHua Hu1.
Abstract
BACKGROUND: This study evaluates the macular function changes in patients with idiopathic macular epiretinal membrane (ERM) by multifocal electroretinography (mfERG) and their correlations with visual acuity and central macular thickness (CMT) by optical coherence tomography (OCT).Entities:
Keywords: Electroretinography; Epiretinalmembrane; Optical coherence tomography
Mesh:
Year: 2017 PMID: 29183292 PMCID: PMC5704536 DOI: 10.1186/s12886-017-0621-1
Source DB: PubMed Journal: BMC Ophthalmol ISSN: 1471-2415 Impact factor: 2.209
P1 and N1 amplitude densities in ring 1–2 of ERM patients (mean ± SD, dv/deg2)
| ring | P1 amplitude density | N1 amplitude density | ||||||
|---|---|---|---|---|---|---|---|---|
| affected | control | t |
| affected | control | t |
| |
| 1 | 40.70 ± 15.58 | 49.87 ± 14.23 | 3.593 | 0.002* | −28.06 ± 9.11 | −28.75 ± 7.98 | −0.284 | 0.779 |
| 2 | 22.12 ± 7.31 | 26.04 ± 6.55 | 3.291 | 0.004* | −14.23 ± 4.25 | −12.07 ± 8.82 | 1.002 | 0.329 |
*P < 0.05 (by paired-samples t-test)
P1 and N1 implicit times in ring 1–2 of ERM patients (mean ± SD, ms)
| ring | P1 implicit time | N1 implicit time | ||||||
|---|---|---|---|---|---|---|---|---|
| affected | control | t |
| affected | control | t |
| |
| 1 | 29.04 ± 1.61 | 28.13 ± 1.33 | −2.244 | 0.037* | 15.77 ± 1.85 | 14.81 ± 1.63 | −1.837 | 0.082 |
| 2 | 28.35 ± 2.43 | 27.80 ± 0.99 | −0.907 | 0.376 | 15.31 ± 1.82 | 14.59 ± 1.48 | 1.972 | 0.063 |
*P < 0.05 (by paired-samples t-test)
Fig. 1Representative mfERG Images of a patient with idiopathic epiretinal membrane. a The first order trace array: the 103 hexagonal elements projected onto the corresponding retina area. b Ring averages: The 103 hexagonal elements that compose the six concentric rings. The mfERG responses showed significant reductions in P1 response amplitude densities in ring 1–2 and P1 implicit time in ring1
Correlation analysis among LogMAR best-corrected visual acuity, CMT and mfERG values
| LogMAR BCVA correlation factors | eyes | r |
|
|---|---|---|---|
| CMT | 20 | 0.0614 | 0.004* |
| P1 amplitude density in ring 1 | 20 | −0.650 | 0.002* |
| P1 amplitude density in ring 2 | 20 | −0.484 | 0.031* |
| P1 implicit time in ring 1 | 20 | 0.181 | 0.446 |
| P1 implicit time in ring 2 | 20 | 0.318 | 0.172 |
| N1 amplitude density in ring 1 | 20 | 0.543 | 0.013* |
| N1 amplitude density in ring 2 | 20 | 0.489 | 0.029* |
| N1 implicit time in ring 1 | 20 | 0.528 | 0.017* |
| N1 implicit time in ring 2 | 20 | 0.582 | 0.007* |
*P < 0.05 (by Pearson correlation analyses)
Correlation analysis between CMT and mfERG values
| CMT correlation factors | eyes | r |
|
|---|---|---|---|
| P1 amplitude density in ring 1 | 20 | −0.11 | 0.645 |
| P1 amplitude density in ring 2 | 20 | −0.017 | 0.945 |
| P1 implicit time in ring 1 | 20 | 0.205 | 0.386 |
| P1 implicit time in ring 2 | 20 | 0.545 | 0.013* |
| N1 amplitude density in ring 1 | 20 | 0.148 | 0.534 |
| N1 amplitude density in ring 2 | 20 | 0.121 | 0.613 |
| N1 implicit time in ring 1 | 20 | 0.098 | 0.68 |
| N1 implicit time in ring 2 | 20 | 0.357 | 0.123 |
*P < 0.05 (by Pearson correlation analyses)