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人视神经乳头循环对眼内压升高的自动调节。

Autoregulation of human optic nerve head circulation in response to increased intraocular pressure.

作者信息

Pillunat L E, Anderson D R, Knighton R W, Joos K M, Feuer W J

机构信息

Department of Ophthalmology, Bascom Palmer Eye Institute, University of Miami School of Medicine, Florida 33101, USA.

出版信息

Exp Eye Res. 1997 May;64(5):737-44. doi: 10.1006/exer.1996.0263.

Abstract

The following experiments were undertaken to determine if blood flow is maintained by autoregulation in the human optic nerve head when circulation is challenged by elevated intraocular pressure, and to determine if the presence or absence of autoregulation is universal. Laser Doppler flowmetry was used to determine the average velocity, the number of moving erythrocytes, and the volume of flow in the capillary bed of the optic disc. These parameters were measured in 10 subjects at spontaneous levels of intraocular pressure (IOP), and at pressures artificially elevated to 25, 35, 45 and 55 mm Hg with a scleral suction cup. Four subjects (two who showed autoregulation and two who did not) were studied on six additional occasions to determine consistency of the findings. In these same four subjects a second location on the disc was also measured on six occasions to determine if the IOP-effect on blood flow varied by location. Of the 10 subjects initially studied, seven maintained the baseline level of blood flow over the lower part of the range of elevated intraocular pressure (evidence of autoregulation), but showed a decline in flow by the time IOP reached 45 or 55 mm Hg. Two subjects showed a linear decline in blood flow beginning with the smallest increment of elevation of IOP (no autoregulation), and one showed an uninterpretable result. The two individuals who showed the linear decline and two of those who showed efficient autoregulation were remeasured, and each showed consistently the same pattern as before when restudied on six different occasions each. However, at a different location on their discs, autoregulation was manifest in all of these four individuals. When challenged by elevated IOP, the optic nerve head typically maintains a steady-blood flow over a range of IOP, but fails to maintain the same flow by the time IOP reaches 45 or 55 mm Hg. Some disc locations, at least in some individuals, do not show this autoregulation, but exhibit a decline in blood flow linearly related to IOP, even with the modest elevation of IOP.

摘要

进行了以下实验,以确定当眼内压升高使循环受到挑战时,人视神经乳头的血流是否通过自动调节得以维持,并确定自动调节的存在与否是否具有普遍性。使用激光多普勒血流仪来测定视盘毛细血管床中的平均速度、移动红细胞数量和血流量。在10名受试者的眼内压处于自发水平时,以及使用巩膜吸盘将眼内压人工升高至25、35、45和55毫米汞柱时,对这些参数进行了测量。另外对4名受试者(2名显示有自动调节,2名未显示)进行了6次额外研究,以确定研究结果的一致性。在这相同的4名受试者中,还对视盘上的另一个位置进行了6次测量,以确定眼内压对血流的影响是否因位置而异。在最初研究的10名受试者中,7名在眼内压升高范围的较低部分维持了血流的基线水平(有自动调节的证据),但在眼内压达到45或55毫米汞柱时血流出现下降。2名受试者从眼内压升高最小幅度开始血流呈线性下降(无自动调节),1名受试者显示出无法解释的结果。对显示线性下降的2名受试者以及显示有效自动调节的2名受试者进行了重新测量,并且在分别对他们进行6次不同场合的重新研究时,每个人都始终显示出与之前相同的模式。然而,在他们视盘的不同位置,这4名受试者均表现出自动调节。当受到升高的眼内压挑战时,视神经乳头通常在一定范围眼内压内维持稳定的血流,但在眼内压达到45或55毫米汞柱时无法维持相同的血流。视盘的某些位置,至少在某些个体中,未表现出这种自动调节,而是即使在眼内压适度升高时,血流也呈与眼内压线性相关的下降。

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