Luksch H, Karten H J, Kleinfeld D, Wessel R
Institute of Biology II, Rheinisch-Westfälische Technische Hochschule Aachen, 52074 Aachen, Germany.
J Neurosci. 2001 Aug 15;21(16):6440-6. doi: 10.1523/JNEUROSCI.21-16-06440.2001.
At least three identified cell types in the stratum griseum centrale (SGC) of the chick optic tectum mediate separate pathways from the retina to different subdivisions of the thalamic nucleus rotundus. Two of these, SGC type I and type II, constitute the major direct inputs to rotundal subdivisions that process various aspects of visual information, e.g., motion and luminance changes. Here, we examined the responses of these cell types to somatic current injection and synaptic input. We used a brain slice preparation of the chick tectum and applied whole-cell patch recordings, restricted electrical stimulation of dendritic endings, and subsequent labeling with biocytin. Type I neurons responded with regular sequences of bursts ("chattering") to depolarizing current injection. Electrical stimulation of retinal afferents evoked a sharp-onset EPSP/burst response that was blocked with CNQX. The sharp-onset EPSP/burst response to synaptic stimulation persisted when the soma was hyperpolarized, thus suggesting the presence of dendritic spike generation. In contrast, the type II neurons responded to depolarizing current injection solely with an irregular sequence of individual spikes. Electrical stimulation of retinal afferents led to slow and long-lasting EPSPs that gave rise to one or several action potentials. In conclusion, the morphological distinct SGC type I and II neurons also have different response properties to retinal inputs. This difference is likely to have functional significance for the differential processing of visual information in the separate pathways from the retina to different subdivisions of the thalamic nucleus rotundus.
鸡视顶盖中央灰质层(SGC)中至少有三种已确定的细胞类型介导从视网膜到丘脑圆核不同亚区的独立通路。其中两种,即SGC I型和II型,构成了对圆核亚区的主要直接输入,这些亚区处理视觉信息的各个方面,例如运动和亮度变化。在这里,我们研究了这些细胞类型对体细胞电流注入和突触输入的反应。我们使用鸡顶盖的脑片标本,进行全细胞膜片钳记录、对树突末梢进行限制性电刺激,并随后用生物素标记。I型神经元对去极化电流注入以规则的爆发序列(“颤动”)做出反应。视网膜传入纤维的电刺激诱发了一个起始尖锐的兴奋性突触后电位/爆发反应,该反应被CNQX阻断。当胞体超极化时,对突触刺激的起始尖锐的兴奋性突触后电位/爆发反应仍然存在,因此表明存在树突棘产生。相比之下,II型神经元对去极化电流注入仅以不规则的单个尖峰序列做出反应。视网膜传入纤维的电刺激导致缓慢且持久的兴奋性突触后电位,进而产生一个或几个动作电位。总之,形态上不同的SGC I型和II型神经元对视网膜输入也具有不同的反应特性。这种差异可能对从视网膜到丘脑圆核不同亚区的独立通路中视觉信息的差异处理具有功能意义。