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通过相敏光学相干断层扫描对健康人体小梁网的搏动运动进行量化。

Pulsatile motion of the trabecular meshwork in healthy human subjects quantified by phase-sensitive optical coherence tomography.

作者信息

Li Peng, Shen Tueng T, Johnstone Murray, Wang Ruikang K

机构信息

Departments of Bioengineering, University of Washington, Seattle, WA 98195, USA.

出版信息

Biomed Opt Express. 2013 Sep 6;4(10):2051-65. doi: 10.1364/BOE.4.002051. eCollection 2013.

Abstract

Aqueous leaves the anterior chamber of eye by passing through the trabecular meshwork (TM), a tissue thought to be responsible for increased outflow resistance in glaucoma. Motion assessment could permit characterization of TM biomechanical properties necessary to maintain intra-ocular pressure (IOP) within a narrow homeostatic range. In this paper, we report the first in vivo identification of TM motion in humans. We use a phase-sensitive optical coherence tomography (PhS-OCT) system with sub-nanometer sensitivity to detect and image dynamic pulse-induced TM motion. To permit quantification of TM motion and relationships we develop and apply a phase compensation algorithm permitting removal of the otherwise evitable confounding effects of bulk motion. Twenty healthy human eyes from 10 subjects are imaged. The results permit visualization of pulsatile TM motion visualization by PhS-OCT; correlation with the digital/cardiac pulse is highly significant. The correlation permits assessment of the phase lag and time delay between TM motion and the cardiac pulse. In this study, we find that the digital pulse leads the pulsatile TM motion by a mean phase of 3.53 ± 0.48 rad and a mean time of 0.5 ± 0.14 s in the fundamental frequency. A significant linear relationship is present between the TM phase lag and the heart rate (p value < 0.05). The TM phase lag is also affected by age, the relationship not quite reaching significance in the current study. PhS-OCT reveals pulse-induced motion of the TM that may provide insights into the biomechanics of the tissues involved in the regulation of IOP.

摘要

房水通过小梁网(TM)离开眼前房,小梁网被认为是导致青光眼房水流出阻力增加的组织。运动评估可以表征维持眼内压(IOP)在狭窄稳态范围内所需的小梁网生物力学特性。在本文中,我们报告了首次在人体中对小梁网运动进行的体内识别。我们使用具有亚纳米灵敏度的相敏光学相干断层扫描(PhS-OCT)系统来检测和成像动态脉搏诱导的小梁网运动。为了量化小梁网运动及其关系,我们开发并应用了一种相位补偿算法,以消除整体运动中不可避免的混杂效应。对10名受试者的20只健康人眼进行了成像。结果表明,通过PhS-OCT可以可视化小梁网的搏动性运动;与数字/心脏脉搏的相关性非常显著。这种相关性允许评估小梁网运动与心脏脉搏之间的相位滞后和时间延迟。在本研究中,我们发现数字脉搏在基频上领先于小梁网的搏动性运动,平均相位为3.53±0.48弧度,平均时间为0.5±0.14秒。小梁网相位滞后与心率之间存在显著的线性关系(p值<)。小梁网相位滞后也受年龄影响,在本研究中这种关系不太显著。PhS-OCT揭示了脉搏诱导的小梁网运动,这可能为深入了解参与眼压调节的组织的生物力学提供线索。

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