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目标亮度对调节微波动的影响。

Effect of target luminance on microfluctuations of accommodation.

作者信息

Gray L S, Winn B, Gilmartin B

机构信息

Department of Vision Sciences, Glasgow Caledonian University, UK.

出版信息

Ophthalmic Physiol Opt. 1993 Jul;13(3):258-65. doi: 10.1111/j.1475-1313.1993.tb00468.x.

Abstract

It is feasible that small temporal variations in steady-state accommodation may provide feedback to the accommodation control system through changes in retinal image contrast and that this feedback may be used to maintain an optimal accommodation response. The complex waveform of microfluctuations is dominated by two distinct regions of activity; a low frequency component (LFC < 0.6 Hz) and a high frequency component (1.0 < or = HFC < or = 2.3 Hz). Whereas the HFCs appear to be correlated with some intraocular manifestation of arterial pulse the contribution of the LFCs to the control of steady-state accommodation is unclear. The present study investigates the effect of target luminance on the waveform of accommodative microfluctuations. Three young emmetropic observers viewed monocularly a high contrast (90%) Maltese cross target placed at a vergence equal to their dark-focus level of accommodation in a Badal stimulus system. The luminance of the target was varied from 0.002 to 11.63 cd m-2 in nine equal logarithmic steps. Five continuous accommodation signals were collected for each viewing condition at a sampling rate of 102.4 Hz, and average power spectra subsequently calculated with a frequency resolution of 0.1 Hz. One-way ANOVA revealed a significant variation in the root-mean-square (r.m.s.) value of the microfluctuations (F = 19.795, d.f. 124, P = 0.0001) which could be attributed mainly to increases in the r.m.s. value for the two lowest luminances (0.002 and 0.004 cd m-2). Power spectrum analysis revealed that these changes in the microfluctuations could be attributed to increases of power in the LFC.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

稳态调节中的微小时间变化通过视网膜图像对比度的变化为调节控制系统提供反馈,且这种反馈可用于维持最佳调节反应,这是可行的。微波动的复杂波形由两个不同的活动区域主导;一个低频成分(LFC<0.6Hz)和一个高频成分(1.0≤HFC≤2.3Hz)。虽然高频成分似乎与动脉搏动的某些眼内表现相关,但低频成分对稳态调节控制的贡献尚不清楚。本研究调查了目标亮度对调节性微波动波形的影响。三名年轻正视眼观察者在Badal刺激系统中,单眼观察放置在等于其暗焦点调节聚散度的高对比度(90%)马耳他十字目标。目标亮度以九个相等的对数步长从0.002变化到11.63cd m-2。在每个观察条件下,以102.4Hz的采样率收集五个连续的调节信号,随后以0.1Hz的频率分辨率计算平均功率谱。单因素方差分析显示微波动的均方根(r.m.s.)值有显著变化(F=19.795,自由度124,P=0.0001),这主要可归因于最低两个亮度(0.002和0.004cd m-2)下r.m.s.值的增加。功率谱分析表明,微波动的这些变化可归因于低频成分功率的增加。(摘要截短于250字)

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