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青光眼的视网膜神经节细胞成像:陷阱与挑战。

Imaging of retinal ganglion cells in glaucoma: pitfalls and challenges.

机构信息

Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Währinger Gürtel 18-20, 1090, Vienna, Austria.

出版信息

Cell Tissue Res. 2013 Aug;353(2):261-8. doi: 10.1007/s00441-013-1600-3. Epub 2013 Mar 20.

Abstract

Imaging has gained a key role in modern glaucoma management. Traditionally, interest was directed toward the appearance of the optic nerve head and the retinal nerve fiber layer. With the improvement of the resolution of optical coherence tomography, the ganglion cell complex has also become routinely accessible in the clinic. Further advances have been made in understanding the structure-function relationship in glaucoma. Nevertheless, direct imaging of the retinal ganglion cells in glaucoma would be advantageous. With the currently used techniques, this goal cannot be achieved, because the transversal resolution is limited by aberrations of the eye. The use of adaptive optics has significantly improved transversal resolution, and the imaging of several cell types including cones and astrocytes has become possible. Imaging of retinal ganglion cells, however, still remains a problem, because of the transparency of these cells. However, the visualization of retinal ganglion cells and their dendrites has been achieved in animal models. Furthermore, attempts have been made to visualize the apoptosis of retinal ganglion cells in vivo. Implementation of these techniques in clinical practice will probably improve glaucoma care and facilitate the development of neuroprotective strategies.

摘要

影像学在现代青光眼管理中扮演着重要的角色。传统上,人们关注的焦点是视神经头和视网膜神经纤维层的外观。随着光学相干断层扫描分辨率的提高,神经节细胞复合体也在临床上常规应用。在青光眼的结构-功能关系方面也取得了进一步的进展。然而,直接对视网膜神经节细胞进行成像将是有利的。目前使用的技术无法实现这一目标,因为横向分辨率受到眼睛像差的限制。自适应光学的使用显著提高了横向分辨率,使得包括视锥细胞和星形胶质细胞在内的几种细胞类型的成像成为可能。然而,由于这些细胞的透明性,视网膜神经节细胞的成像仍然是一个问题。然而,在动物模型中已经实现了视网膜神经节细胞及其树突的可视化。此外,还试图在体内观察视网膜神经节细胞的凋亡。这些技术在临床实践中的应用可能会改善青光眼的护理,并促进神经保护策略的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/babe/3714556/99ea20cd5963/441_2013_1600_Fig1_HTML.jpg

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