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连续无线遥测测量的非人类灵长类动物的眼内压 (IOP) 循环模式和瞬态 IOP 波动。

Cyclic Pattern of Intraocular Pressure (IOP) and Transient IOP Fluctuations in Nonhuman Primates Measured with Continuous Wireless Telemetry.

机构信息

Vision Science Graduate Program, School of Optometry, University of Alabama at Birmingham, Birmingham USA.

Ophthalmology and Visual Sciences, School of Medicine, University of Alabama at Birmingham, Birmingham USA.

出版信息

Curr Eye Res. 2019 Nov;44(11):1244-1252. doi: 10.1080/02713683.2019.1629594. Epub 2019 Jun 19.

Abstract

: Most studies on intraocular pressure (IOP) to monitor IOP "fluctuations" in glaucoma patients have been performed with snapshot tonometry techniques that obtain IOP measurements at single time points weeks to months apart. However, IOP telemetry has shown that IOP varies from second-to-second due to blinks, saccades, and systolic vascular filling. The purpose of this study was to characterize the cyclic pattern of baseline IOP and transient IOP fluctuations in 3 nonhuman primates (NHPs).: Bilateral IOP was measured using a proven implantable telemetry system and recorded 500 times per second, 24 hours a day, up to 451 continuous days in 3 male rhesus macaques aged 4 to 5 years old. The IOP transducers were calibrated every two weeks via anterior chamber cannulation manometry and all data were continuously corrected for signal drift via software, filtered for signal noise and dropout, and peaks and troughs were quantified and counted using a finite impulse response filter; waking hours were defined as 6:00-18:00 hours based on room light cycle.: Fourier transform analyses of baseline IOP and the hourly mean frequency of transient IOP fluctuations > 0.6 mmHg, 0.6-5 mmHg and > 5 mmHg above baseline during waking hours exhibited an approximate 16- to 91-day cyclic pattern in all NHPs. There were no measured environmental or experimental factors associated with this cyclical pattern.: While the importance of the cyclic pattern identified in IOP and its fluctuations is unknown at this time, it is plausible that this pattern is relevant to both homeostasis and pathophysiology of the ONH, corneoscleral shell, and aqueous outflow pathways.

摘要

: 大多数关于眼压 (IOP) 的研究都是通过快照眼压技术进行的,该技术在相隔数周到数月的时间内单次测量眼压。然而,眼压遥测技术表明,由于眨眼、扫视和收缩期血管充盈,眼压会随时间的推移而发生变化。本研究的目的是描述 3 只非人类灵长类动物 (NHP) 基础眼压和瞬态眼压波动的周期性模式。: 使用经过验证的植入式遥测系统对双侧眼压进行测量,每秒记录 500 次,每天 24 小时,在 3 只 4 至 5 岁的雄性恒河猴中连续记录 451 天。眼压换能器每两周通过前房穿刺眼压测量进行校准,所有数据均通过软件连续校正信号漂移,滤除信号噪声和丢失,并使用有限脉冲响应滤波器对眼压峰值和谷值进行量化和计数;根据房间灯光周期,将清醒时间定义为 6:00-18:00 小时。: 对基础眼压和清醒期间瞬态眼压波动的每小时平均频率(高于基础眼压 0.6mmHg、0.6-5mmHg 和 >5mmHg)的傅里叶变换分析显示,所有 NHP 均表现出约 16-91 天的周期性模式。没有测量到与这种周期性模式相关的环境或实验因素。: 虽然目前尚不清楚眼压及其波动中确定的周期性模式的重要性,但这种模式与 ONH、角膜巩膜壳和房水流出途径的内稳态和病理生理学相关是合理的。

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