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一种联合视网膜血管和组织氧张力成像的方法。

A Method for Combined Retinal Vascular and Tissue Oxygen Tension Imaging.

机构信息

Department of Bioengineering, University of Illinois at Chicago, Chicago, IL, 60607, USA.

Department of Ophthalmology and Visual Science, University of Illinois at Chicago, Chicago, IL, 60612, USA.

出版信息

Sci Rep. 2017 Sep 6;7(1):10622. doi: 10.1038/s41598-017-10955-1.

Abstract

The retina requires adequate oxygenation to maintain cellular metabolism and visual function. Inner retinal oxygen metabolism is directly related to retinal vascular oxygen tension (PO) and inner retinal oxygen extraction fraction (OEF), whereas outer retinal oxygen consumption (QO) relies on oxygen availability by the choroid and is contingent upon retinal tissue oxygen tension (tPO) gradients across the retinal depth. Thus far, these oxygenation and metabolic parameters have been measured independently by different techniques in separate animals, precluding a comprehensive and correlative assessment of retinal oxygenation and metabolism dynamics. The purpose of the current study is to report an innovative optical system for dual oxyphor phosphorescence lifetime imaging to near-simultaneously measure retinal vascular PO and tPO in rats. The use of a new oxyphor with different spectral characteristics allowed differentiation of phosphorescence signals from the retinal vasculature and tissue. Concurrent measurements of retinal arterial and venous PO , tPO through the retinal depth, inner retinal OEF, and outer retinal QO were demonstrated, permitting a correlative assessment of retinal oxygenation and metabolism. Future application of this method can be used to investigate the relations among retinal oxygen content, extraction and metabolism under pathologic conditions and thus advance knowledge of retinal hypoxia pathophysiology.

摘要

视网膜需要充足的氧合作用来维持细胞代谢和视觉功能。内视网膜的氧代谢与视网膜血管氧张力(PO)和内视网膜氧提取分数(OEF)直接相关,而外视网膜的耗氧量(QO)依赖于脉络膜的氧气供应,并取决于视网膜组织氧张力(tPO)在视网膜深度上的梯度。到目前为止,这些氧合和代谢参数已经通过不同的技术在不同的动物中进行了独立测量,这排除了对视网膜氧合和代谢动力学的全面和关联评估。本研究的目的是报告一种用于双氧磷荧光寿命成像的创新光学系统,以近乎同时测量大鼠视网膜血管 PO 和 tPO。使用具有不同光谱特征的新氧磷,可以区分视网膜血管和组织的荧光信号。通过视网膜深度同时测量视网膜动脉和静脉 PO、tPO、内视网膜 OEF 和外视网膜 QO,允许对视网膜氧合和代谢进行关联评估。该方法的未来应用可用于研究病理条件下视网膜氧含量、提取和代谢之间的关系,从而增进对视网膜缺氧病理生理学的认识。

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