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人羊膜塞促进黄斑裂孔闭合失败。

Human amniotic membrane plug to promote failed macular hole closure.

机构信息

Department of NEUROFARBA, Ophthalmology, University of Florence, Largo Brambilla 3, Careggi, 50134, Florence, Italy.

Ospedale Oftalmico Di Torino, Turin, Italy.

出版信息

Sci Rep. 2020 Oct 26;10(1):18264. doi: 10.1038/s41598-020-75292-2.

Abstract

The failed macular hole is a full-thickness defect involving the fovea that fails to close despite 1 or more surgeries. While many surgical options have been proposed to manage it, none of these guarantee complete anatomical success and satisfactory visual recovery. We report postoperative outcomes on 36 patients affected by failed macular hole, treated with a human amniotic membrane plug transplant. Follow-ups were performed with a standard ophthalmological examination and with advanced multimodal diagnostic imaging. Anatomical closure was achieved at 3 months in all patients. Mean best-corrected visual acuity improved statistically significantly at 6 months (p < 0.05). Through microperimetric tests, we assessed a partial recovery of the macular sensitivity on the edges of the plug. Analyzing SD-OCT images, we reported a tissutal ingrowth above the plug, and its segmentation into layers, mimicking normal retinal architecture. OCT-Angiography images non invasively analysed the retinal parafoveal capillary microvasculature; the elaboration of Adaptive Optics images showed the presence of photoreceptors at the edges of the plug. This work demonstrates not only the complete anatomical success of our technique, but also remarkable functional results, and opens the door to a greater understanding of modifications induced by the presence of a human amniotic membrane plug.

摘要

失败的黄斑裂孔是一种全层缺损,累及黄斑,尽管进行了 1 次或多次手术,但仍未闭合。虽然已经提出了许多手术方法来治疗它,但没有一种方法能保证完全的解剖成功和满意的视力恢复。我们报告了 36 例因黄斑裂孔失败而接受人羊膜塞移植治疗的患者的术后结果。采用标准眼科检查和先进的多模态诊断成像进行随访。所有患者在 3 个月时均达到解剖闭合。6 个月时最佳矫正视力显著提高(p<0.05)。通过微视野测试,我们评估了塞子边缘黄斑敏感性的部分恢复。通过分析 SD-OCT 图像,我们报告了塞子上方的组织向内生长,并将其分层,模拟正常的视网膜结构。OCT-Angiography 图像非侵入性地分析了视网膜旁中心毛细血管微循环;自适应光学图像的处理显示塞子边缘存在光感受器。这项工作不仅证明了我们技术的完全解剖成功,而且还取得了显著的功能结果,并为更好地理解人羊膜塞的存在所引起的改变开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faf8/7588413/ec44d1d69862/41598_2020_75292_Fig1_HTML.jpg

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