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首页> 外文期刊>Investigative ophthalmology & visual science >Measurement of ocular fundus pulsation in healthy subjects using a novel Fourier-domain optical coherence tomography
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Measurement of ocular fundus pulsation in healthy subjects using a novel Fourier-domain optical coherence tomography

机译:使用新型傅里叶域光学相干断层扫描技术测量健康受试者的眼底搏动

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Purpose. Anomalies in the pulsatility of the eye have been associated with many types of ocular pathology. Estimation of ocular pulsatility is usually obtained by measuring the variation in the intraocular pressure using tonometry-based instruments. In this work, the authors present and demonstrate the applicability of a novel and noninvasive Fourier-domain optical coherence tomography (FD-OCT) system to measure pulsatile ocular tissue movements. Methods. The authors simultaneously measured the longitudinal movement of the cornea and the retina driven by the cardiac cycle in 21 healthy volunteers using their custom-made FD-OCT. They calculated the corresponding fundus pulse amplitude (FPA), which is the variation in the distance between the cornea and the retina. Results. It was found that in young, healthy subjects, the cornea and the retina move axially during the cardiac cycle, with almost equal amplitude but with a phase difference ranging between 1° and 20°. The measured FPA was found to be mostly due to the relative phase difference between corneal and retinal movements, and frequency analysis revealed the presence of the harmonics of heartbeat. The root-mean-square values for cornea, retina, and FPA movements were found to be 28 ± 9 μm, 29 ± 9 μm, and 4 ± 2 μm, respectively. The dominant frequency component in corneal and retinal movement was found to be the second harmonic of the heartbeat. Conclusions. The technique described here is useful for a precise description of FPA and the movement of ocular tissues. Further investigations and technical improvements will be beneficial for understanding the role of choroidal pulsation in the pathophysiology of ocular diseases.
机译:目的。眼睛的搏动异常与多种类型的眼病理有关。通常通过使用基于眼压计的仪器测量眼内压的变化来获得眼搏动性的估计。在这项工作中,作者提出并证明了一种新颖的,非侵入性的傅里叶域光学相干断层扫描(FD-OCT)系统在测量脉动眼组织运动中的适用性。方法。作者同时使用他们定制的FD-OCT测量了21位健康志愿者的心动周期驱动的角膜和视网膜的纵向运动。他们计算了相应的眼底脉冲幅度(FPA),即角膜和视网膜之间距离的变化。结果。发现在健康的年轻受试者中,角膜和视网膜在心动周期中轴向移动,振幅几乎相等,但相差在1°和20°之间。发现测得的FPA主要归因于角膜和视网膜运动之间的相对相位差,并且频率分析显示存在心跳谐波。角膜,视网膜和FPA运动的均方根值分别为28±9μm,29±9μm和4±2μm。发现角膜和视网膜运动中的主要频率成分是心跳的二次谐波。结论此处描述的技术可用于精确描述FPA和眼组织的运动。进一步的研究和技术改进将有助于理解脉络膜搏动在眼部疾病的病理生理中的作用。

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