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视网膜静脉搏动:拓展我们对这一神秘现象的理解和应用。

Retinal venous pulsation: Expanding our understanding and use of this enigmatic phenomenon.

机构信息

Centre for Ophthalmology and Visual Science, The University of Western Australia, Perth, Australia; Lions Eye Institute, The University of Western Australia, Perth, Australia.

Statistics and Bioinformatics Group, Institute of Fundamental Sciences, Massey University, Palmerston North, New Zealand.

出版信息

Prog Retin Eye Res. 2016 Nov;55:82-107. doi: 10.1016/j.preteyeres.2016.06.003. Epub 2016 Jul 11.

Abstract

Retinal vein pulsation was first noted soon after the invention of the ophthalmoscope 170 years ago and was seen to change with cerebrospinal fluid pressure (CSFP) variation in the 1920s. The classical explanation for vein pulsation was that the cardiac cycle induced systolic peak in intraocular pressure (IOP) tended to intermittently collapse the retinal vein close to its exit in the central optic disk, causing pulsation to be counter-phase to IOP. Recently, improved ophthalmodynamometry and video recording techniques have allowed us to explore the fundamentals of retinal vein pulsation. This demonstrates that retinal venous collapse is in phase with both IOP and CSFP diastole, indicating the dependence upon CSFP pulse. We describe in some detail the mathematical and physical models of Starling resistors and how their results can be applied to understand the physiology of retinal vein pulsation. We discuss various techniques for measuring retinal venous pulsation, including a novel modified photo-plethysmographic technique developed in our laboratory. With these techniques, non-invasive measurement of CSFP is beginning to look feasible. Venous pulsation properties also have significant prognostic value in predicting long-term outcomes for both glaucoma and central retinal vein occlusion, as well as utility in other retinal vasculopathies and orbital disease. We demonstrate the potential use of modified photo-plethysmographic images in assessing these various disorders. A revised understanding of retinal vein pulse wave transmission along with improved measurement techniques may generate useful clinical tools for assessing these disorders.

摘要

视网膜静脉搏动早在 170 年前眼底镜发明后不久就被首次发现,并在 20 世纪 20 年代观察到其随脑脊液压力 (CSFP) 变化而变化。静脉搏动的经典解释是,心动周期引起的眼内压 (IOP) 收缩峰倾向于间歇性地使视网膜静脉在中央视盘附近的出口处塌陷,导致搏动与 IOP 呈反相。最近,改进的眼动力测量和视频记录技术使我们能够探索视网膜静脉搏动的基础。这表明视网膜静脉塌陷与 IOP 和 CSFP 舒张同步,表明其依赖于 CSFP 脉冲。我们详细描述了 Starling 阻力器的数学和物理模型,以及如何应用其结果来理解视网膜静脉搏动的生理学。我们讨论了各种测量视网膜静脉搏动的技术,包括我们实验室开发的一种新颖的改良光体积描记技术。通过这些技术,CSFP 的非侵入性测量开始变得可行。静脉搏动特性在预测青光眼和中央视网膜静脉阻塞的长期预后以及其他视网膜血管病变和眼眶疾病的预后方面也具有重要的预后价值。我们展示了改良光体积描记图像在评估这些各种疾病中的潜在用途。对视网膜静脉脉搏波传输的理解的修订以及改进的测量技术可能会为评估这些疾病生成有用的临床工具。

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