Riva C E, Cranstoun S D, Petrig B L
Department of Ophthalmology, University of Pennsylvania, Scheie Eye Institute, Philadelphia, USA.
Microvasc Res. 1996 Nov;52(3):258-69. doi: 10.1006/mvre.1996.0063.
The effect of decreased ocular mean perfusion pressure (PPm), defined as mean arterial blood pressure minus intraocular pressure (IOP), on optic nerve head blood flow (Fonh) and on the response of this flow (RFonh) to diffuse luminance flicker was investigated in 19 anesthetized cats using laser Doppler flowmetry. PPm was decreased by increasing the IOP. The flicker stimulus consisted of 20-msec flashes delivered at 10 Hz for 30-60 sec. It illuminated a 30 degrees diameter area of the fundus, centered at the optic disk. Decreasing PPm by 10-35% from its resting value resulted in a 23% increase in RFonh (supranormal RFonh). With further decreases in PPm, RFonh decreased, reaching zero at a PPm below 20 mmHg. Fonh remained constant until PPm was < 40 mmHg and then decreased thereafter. When PPm was brought back to resting value after having been decreased for approximately 45 min, Fonh first increased by approximately 380% and then returned to its value at rest within approximately 4.5 min. At low PPm, hyperoxia decreased Fonh by 23% and restored the attenuated RFonh back to the value at resting PPm and hypoxia did not increase Fonh, as it did at normal PPm. This study confirms that the optic nerve head circulation is autoregulated over a wide range of PPm and reveals, for the first time, a hyperemic response to a prolonged decrease in PPm. It suggests that hypoxia plays a role in abolishing RFonh at low PPm and that the supranormal RFonh at moderately decreased PPm is due to an increase in the flicker-induced ganglion cell activity.
在19只麻醉猫身上,使用激光多普勒血流仪研究了眼平均灌注压(PPm,定义为平均动脉血压减去眼压)降低对视神经乳头血流(Fonh)以及该血流对弥漫性亮度闪烁的反应(RFonh)的影响。通过升高眼压来降低PPm。闪烁刺激由以10赫兹频率持续30 - 60秒的20毫秒闪光组成。它照亮了以视盘为中心、直径30度的眼底区域。将PPm从其静息值降低10% - 35%会导致RFonh增加23%(超常RFonh)。随着PPm进一步降低,RFonh下降,在PPm低于20 mmHg时降至零。Fonh在PPm < 40 mmHg之前保持恒定,之后开始下降。当PPm在降低约45分钟后恢复到静息值时,Fonh首先增加约380%,然后在约4.5分钟内恢复到静息值。在低PPm时,高氧使Fonh降低23%,并将减弱的RFonh恢复到静息PPm时的值,而低氧并未像在正常PPm时那样增加Fonh。本研究证实视神经乳头循环在很宽的PPm范围内是自动调节的,并首次揭示了对PPm长时间降低的充血反应。这表明低氧在低PPm时消除RFonh中起作用,并且在PPm适度降低时的超常RFonh是由于闪烁诱导的神经节细胞活动增加所致。