Allgemeine Zoologie and Neurobiologie, Ruhr-Universität Bochum, Bochum, Germany.
PLoS One. 2012;7(9):e44724. doi: 10.1371/journal.pone.0044724. Epub 2012 Sep 6.
In the present study we investigated in vivo the effects of pharmacological manipulation of retinal processing on the response properties of direction selective retinal slip cells in the nucleus of the optic tract and dorsal terminal nucleus (NOT-DTN), the key visuomotor interface in the pathway underlying the optokinetic reflex. Employing a moving visual stimulus consisting of either a large dark or light edge we could differentiate direction selective ON and OFF responses in retinal slip cells. To disclose the origin of the retinal slip cells' unexpected OFF response we selectively blocked the retinal ON channels and inactivated the visual cortex by cooling. Cortical cooling had no effect on the direction selectivity of the ON or the OFF response in NOT-DTN retinal slip cells. Blockade of the retinal ON channel with APB led to a loss of the ON and, to a lesser degree, of the OFF response and a reduction in direction selectivity. Subsequent blocking of GABA receptors in the retina with picrotoxin unmasked a vigorous albeit direction unselective OFF response in the NOT-DTN. Disturbing the retinal chloride homeostasis by intraocular injections of bumetanide or furosemide led to a loss of direction selectivity in both the NOT-DTN's ON and the OFF response due to a reduced response in the neuron's preferred direction under bumetanide as well as under furosemide and a slightly increased response in the null direction under bumetanide. Our results indicate that the direction specificity of retinal slip cells in the NOT-DTN of the rat strongly depends on direction selective retinal input which depends on intraretinal chloride homeostasis. On top of the well established input from ON center direction selective ganglion cells we could demonstrate an equally effective input from the retinal OFF system to the NOT-DTN.
在本研究中,我们通过药理学方法干预视网膜处理,观察其对光感受器运动细胞(optic tract nucleus and dorsal terminal nucleus,NOT-DTN)中方向选择性视网膜滑动细胞反应特性的影响。该细胞是光反射通路中的关键视动接口。我们利用大暗边或亮边的运动视觉刺激,可将视网膜滑动细胞的方向选择性 ON 和 OFF 反应区分开来。为揭示视网膜滑动细胞意外 OFF 反应的起源,我们选择性地阻断视网膜 ON 通道并用冷却来使视皮层失活。皮层冷却对 NOT-DTN 视网膜滑动细胞的 ON 或 OFF 反应的方向选择性没有影响。APB 阻断视网膜 ON 通道会导致 ON 反应和 OFF 反应的丧失,且降低方向选择性。随后,用 picrotoxin 阻断视网膜中的 GABA 受体,NOT-DTN 中会出现强烈的非方向选择性 OFF 反应,但无方向选择性。向眼内注射布美他尼或呋塞米会扰乱视网膜氯离子稳态,导致 NOT-DTN 的 ON 和 OFF 反应的方向选择性丧失,这是由于布美他尼和呋塞米会使神经元在其优势方向的反应减弱,而在布美他尼的零方向反应略有增强。我们的研究结果表明,大鼠 NOT-DTN 中视网膜滑动细胞的方向特异性强烈依赖于方向选择性视网膜输入,而后者又依赖于视网膜内氯离子稳态。除了已确立的来自 ON 中心方向选择性节细胞的输入外,我们还可以证明来自视网膜 OFF 系统的同样有效的输入也可以到达 NOT-DTN。