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圆锥角膜角膜基底神经丛的结构变化。

Structural changes in the corneal subbasal nerve plexus in keratoconus.

机构信息

Department of Ophthalmology, Saarland University Medical Center, Homburg, Germany.

出版信息

Acta Ophthalmol. 2020 Dec;98(8):e928-e932. doi: 10.1111/aos.14432. Epub 2020 Apr 10.

Abstract

BACKGROUND

Corneal confocal microscopy (CCM) allows visualizing slightest alterations within the corneal subbasal nerve plexus (SNP). Recent CCM studies based on the analysis of three-five CCM images per eye assumed a reduced corneal nerve fibre length (CNFL) in keratoconus (KC).

METHODS

The SNP of KC patients (n = 23, 13 contact lens wearing, 10 noncontact lens wearing) and patients without KC (n = 16) was examined by 10 CCM images of one eye per patient. The CNFL per frame area was calculated, and the SNP tortuosity was quantified by measuring (a) the amplitude of the curves and (b) the area under the curve (AUC) formed by the SNP.

RESULTS

Analysing 390 non-overlapping confocal images revealed the CNFL (mm/mm ) to be significantly lower in KC (16.4 ± 1.9 mm/mm ) than in healthy corneae (23.8 ± 3.3 mm/mm , p < 0.0001; mean ± SD; p-value calculated using the Mann-Whitney U-test), without a difference between contact lens wearing and noncontact lens wearing KC patients (p = 0.4). Amplitudes and AUCs analysed as median with 25th and 75th percentile were significantly increased in KC (amplitude 33/23/41 µm and AUC 2839/1545/3444 µm ) compared to healthy corneae (amplitude 24/18/28 µm and AUC 1870/1193/2327 µm , p < 0.0001).

CONCLUSIONS

Corneal confocal microscopy (CCM) visualizes slightest alterations within the SNP in KC including (a) a significantly lower CNFL and (b) an enhanced winding course of the SNP. The significantly lower CNFL observed in KC may support the hypothesis of a neurodegenerative aspect of the disease and might be a measure to be correlated with the severity and progression of the disease.

摘要

背景

角膜共焦显微镜(CCM)可对视神经丛(SNP)的最微小改变进行可视化。基于每只眼三到五张 CCM 图像分析的最近 CCM 研究假设圆锥角膜(KC)中角膜神经纤维长度(CNFL)减少。

方法

通过对每只眼的 10 张 CCM 图像对 KC 患者(n=23,13 名戴隐形眼镜,10 名不戴隐形眼镜)和无 KC 患者(n=16)的 SNP 进行检查。计算每帧的 CNFL 长度,并通过测量 SNP 的(a)曲线幅度和(b)SNP 下的曲线面积(AUC)来量化 SNP 的扭曲度。

结果

分析 390 张无重叠的共焦图像显示,KC 中 CNFL(mm/mm)明显低于健康角膜(23.8±3.3mm/mm,p<0.0001;平均值±标准差;使用 Mann-Whitney U 检验计算 p 值),且戴隐形眼镜和不戴隐形眼镜的 KC 患者之间无差异(p=0.4)。KC 中分析的中位数、25 分位数和 75 分位数的幅度和 AUC 明显增加(幅度 33/23/41µm 和 AUC 2839/1545/3444µm),与健康角膜相比(幅度 24/18/28µm 和 AUC 1870/1193/2327µm,p<0.0001)。

结论

角膜共焦显微镜(CCM)可对视神经丛(SNP)中的最微小改变进行可视化,包括(a)CNFL 明显降低和(b)SNP 缠绕程度增加。在 KC 中观察到的 CNFL 明显降低可能支持疾病神经退行性方面的假说,并且可能是与疾病的严重程度和进展相关的测量指标。

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