Smith S A, Bedi K S
Department of Anatomical Sciences, University of Queensland, St Lucia, Australia.
J Anat. 1997 May;190 ( Pt 4)(Pt 4):481-90. doi: 10.1046/j.1469-7580.1997.19040481.x.
Several studies have reported the morphological changes induced by unilateral enucleation during early neonatal life on the developing visual system. This study has examined cellular changes in the superior colliculi by removal of a single eye in adult rats. Anaesthetised male hooded rats aged 90 d had their right eyes removed. Groups of nonenucleated control and enucleated rats were killed when aged either 150 or 390 d. The brains were removed and both the right and left superior colliculi dissected out. The volume of the stratum griseum superficiale (SGS) within these colliculi was estimated stereologically by light microscopy, as well as the numerical density and total number of neurons within this cell layer. The volume of the cell layer was reduced by about 40% on the side contralateral to the enucleated eye but not on the ipsilateral side at both survival periods examined. The numerical density of neurons within the SGS was unaffected by the enucleation so that the colliculi contralateral to the enucleated eye showed a substantial loss of neurons within this cells layer. This study demonstrates the importance of the retinal ganglion cell input, even in adult animals, for maintaining the viability of neurons in the SGS layer of the superior colliculus.
多项研究报告了新生早期单侧眼球摘除对发育中的视觉系统所诱导的形态学变化。本研究通过摘除成年大鼠的单眼,检查了上丘中的细胞变化。对90日龄的雄性带帽麻醉大鼠摘除其右眼。将未摘除眼球的对照组和摘除眼球的大鼠分为两组,分别在150日龄和390日龄时处死。取出大脑,分离出左右上丘。通过光学显微镜立体测量法估计这些丘中浅灰质层(SGS)的体积,以及该细胞层内神经元的数值密度和总数。在所检查的两个存活期,摘除眼球对侧的细胞层体积减少了约40%,但同侧未减少。SGS内神经元的数值密度不受眼球摘除的影响,因此摘除眼球对侧的丘在该细胞层内显示出大量神经元丢失。本研究证明了视网膜神经节细胞输入即使在成年动物中,对于维持上丘SGS层中神经元的活力也很重要。