Department of Neurosurgery, Upstate Medical University, Syracuse, New York, USA.
Invest Ophthalmol Vis Sci. 2011 Mar 10;52(3):1325-35. doi: 10.1167/iovs.10-5215. Print 2011 Mar.
To examine the extent to which neurovascular coupling contributes to stimulus-evoked intrinsic signals in the retina.
The retinas of five adult cats were examined in vivo. Animals were anesthetized and paralyzed for imaging stability. The retinas were imaged through a modified fundus camera capable of presenting patterned visual stimuli simultaneous with a diffuse near infrared (NIR).
Injections of nigrosin increased signal strength by as much as 36.3%, and indocyanine green (ICG) increased signal magnitudes by as much as 38.1%. In both cases, intrinsic signals maintained a colocalized pattern of activation corresponding to the visual stimulus presented. The time course of the evoked signals remained unaltered. The spectral dependency of signal enhancement mirrored the absorption spectra of the injected dyes.
The data are consistent with a neurovascular coupling effect in the retina. Patterned visual stimuli evoke colocalized NIR reflectance changes. The patterned decrease in reflectance was enhanced after nigrosin or ICG was injected into the systemic circulation. These findings suggest stimulus-evoked changes in blood volume underlie a component of the retinal intrinsic signals.
研究神经血管耦合在视网膜刺激诱发内在信号中的作用程度。
对五只成年猫的视网膜进行了体内研究。为了保证成像的稳定性,动物被麻醉并瘫痪。通过能够同时呈现图案化视觉刺激和漫射近红外(NIR)的改良眼底相机对视网膜进行成像。
尼格辛(nigrosin)的注射将信号强度提高了多达 36.3%,吲哚菁绿(ICG)将信号幅度提高了多达 38.1%。在这两种情况下,内在信号都保持与呈现的视觉刺激相对应的局部激活模式。诱发信号的时程没有改变。信号增强的光谱依赖性与注射染料的吸收光谱相匹配。
这些数据与视网膜中的神经血管耦合效应一致。图案化的视觉刺激引发局部 NIR 反射变化。尼格辛或 ICG 注入全身循环后,反射的图案性降低得到增强。这些发现表明,血液体积的刺激诱发变化是视网膜内在信号的一个组成部分。