Amthor F R, Grzywacz N M, Merwine D K
Department of Psychology and Neurobiology Research Center, University of Alabama at Birmingham 35294, USA.
Vis Neurosci. 1996 Mar-Apr;13(2):303-9. doi: 10.1017/s0952523800007549.
The excitatory receptive-field centers of On-Off directionally selective (DS) ganglion cells of the rabbit retina correspond closely to the lateral extent of their dendritic arborizations. Some investigators have hypothesized from this that theories for directional selectivity that entail a lateral spread of excitation from outside the ganglion cell dendritic tree, such as from starburst amacrine cells, are therefore untenable. We show here that significant motion facilitation is conducted from well outside the classical excitatory receptive-field center (and, therefore, dendritic arborization) of On-Off DS ganglion cells for preferred-direction, but not null-direction moving stimuli. These results are consistent with a role in directional selectivity for cells with processes lying beyond the On-Off ganglion cell's excitatory receptive-field center. These results also highlight the fundamental distinction in retinal ganglion cell receptive-field organization between classical excitatory mechanisms and those that facilitate other excitation without producing directly observable excitation by themselves.
兔视网膜开-关方向选择性(DS)神经节细胞的兴奋性感受野中心与其树突分支的横向范围密切对应。一些研究者据此推测,那些需要从神经节细胞树突树外部进行兴奋横向传播的方向选择性理论,比如来自星爆无长突细胞的传播,是站不住脚的。我们在此表明,对于开-关DS神经节细胞的偏好方向移动刺激而非零方向移动刺激,显著的运动易化是从经典兴奋性感受野中心(以及树突分支)之外很好的位置传导而来的。这些结果与位于开-关神经节细胞兴奋性感受野中心之外的细胞进程在方向选择性中所起的作用是一致的。这些结果还突出了视网膜神经节细胞感受野组织中经典兴奋性机制与那些促进其他兴奋但自身不产生直接可观察到的兴奋的机制之间的根本区别。