Wylie Douglas R W, Pakan Janelle M P, Elliott Cameron A, Graham David J, Iwaniuk Andrew N
Department of Psychology, University of Alberta, Edmonton, Alberta, Canada.
Vis Neurosci. 2007 Sep-Oct;24(5):691-707. doi: 10.1017/S0952523807070599. Epub 2007 Oct 4.
The avian nucleus of the basal optic root (nBOR) is a visual structure involved in the optokinetic response. nBOR consists of several morphologically distinct cell types, and in the present study, we sought to determine if these different cell types had differential projections. Using retrograde tracers, we examined the morphology and distribution of nBOR neurons projecting to the vestibulocerebellum (VbC), inferior olive (IO), dorsal thalamus, the pretectal nucleus lentiformis mesencephali (LM), the contralateral nBOR, the oculomotor complex (OMC) and a group of structures along the midline of the mesencephalon. The retrogradely labeled neurons fell into two broad categories: large neurons, most of which were multipolar rather than fusiform and small neurons, which were either fusiform or multipolar. From injections into the IO, LM, contralateral nBOR, and structures along the midline-mesencephalon small nBOR neurons were labeled. Although there were no differences with respect to the size of the labeled neurons from these injections, there were some differences with the respect to the distribution of labeled neurons and the proportion of multipolar vs. fusiform neurons. From injections into the VbC, the large multipolar cells were labeled throughout nBOR. The only other cases in which these large neurons were labeled were contralateral OMC injections. To investigate if single neurons project to multiple targets we used paired injections of red and green fluorescent retrograde tracers into different targets. Double-labeled neurons were never observed indicating that nBOR neurons do not project to multiple targets. We conclude that individual nBOR neurons have unique projections, which may have differential roles in processing optic flow and controlling the optokinetic response.
鸟类基底视根核(nBOR)是一种参与视动反应的视觉结构。nBOR由几种形态上不同的细胞类型组成,在本研究中,我们试图确定这些不同的细胞类型是否具有不同的投射。使用逆行示踪剂,我们检查了投射到前庭小脑(VbC)、下橄榄核(IO)、背侧丘脑、中脑豆状前核(LM)、对侧nBOR、动眼神经复合体(OMC)以及中脑中线沿线一组结构的nBOR神经元的形态和分布。逆行标记的神经元分为两大类:大神经元,其中大多数是多极而非梭形的;小神经元,它们要么是梭形要么是多极的。从注射到IO、LM、对侧nBOR以及中脑中线沿线结构的情况来看,小nBOR神经元被标记。尽管来自这些注射的标记神经元在大小方面没有差异,但在标记神经元的分布以及多极与梭形神经元的比例方面存在一些差异。从注射到VbC的情况来看,大的多极细胞在整个nBOR中都被标记。这些大神经元被标记的唯一其他情况是对侧OMC注射。为了研究单个神经元是否投射到多个靶点,我们将红色和绿色荧光逆行示踪剂成对注射到不同靶点。从未观察到双标记神经元,这表明nBOR神经元不会投射到多个靶点。我们得出结论,单个nBOR神经元具有独特的投射,这可能在处理视觉流和控制视动反应中具有不同的作用。