Crowder Nathan A, Dickson Clayton T, Wylie Douglas R W
Department of Psychology, University of Alberta, Edmonton, Alberta T6G 2E9, Canada.
J Neurophysiol. 2004 Jan;91(1):274-85. doi: 10.1152/jn.00763.2003. Epub 2003 Sep 24.
The pretectal nucleus lentiformis mesencephali (LM) and the nucleus of the basal optic root (nBOR) of the avian accessory optic system (AOS) are retinal-recipient visual nuclei involved in the analysis of optic flow that results from self-motion, and in the generation of the optokinetic response. Neurons in these nuclei show direction selectivity in response to large-field motion and are tuned in the spatiotemporal domain. In addition to retinal afferentation, both the nBOR and LM receive afferents from the Wulst, which is thought to be the avian homolog of the primary visual cortex. We examined the effects of Wulst electrical stimulation on the activity of LM neurons and recorded the directional and spatiotemporal tuning of LM neurons in pigeons before, during, and after the Wulst was temporarily inactivated by lidocaine injection. In response to Wulst electrical stimulation, LM neurons showed either short-latency excitation followed by longer-latency inhibition (W+ cells), or only a longer-latency inhibition (W- cells). The average response latencies for W+ and W- cells were 13.5 and 28.3 ms, respectively. The effects of Wulst stimulation did not correlate with either the directional or spatiotemporal tuning of the LM neurons. Injection of lidocaine into the nBOR reduced the longer-latency oscillations of W+ and W- cells. When the Wulst was temporarily inactivated by lidocaine neither the directional nor spatiotemporal response properties of LM neurons were affected. The possible functions of the projection from the Wulst to the LM are discussed.
鸟类辅助视觉系统(AOS)的顶盖前豆状中脑核(LM)和基底视根核(nBOR)是接受视网膜传入的视觉核团,参与对自身运动所产生的视觉流的分析以及视动反应的产生。这些核团中的神经元对大视野运动表现出方向选择性,并在时空域中进行调谐。除了视网膜传入纤维外,nBOR和LM都接受来自视叶的传入纤维,视叶被认为是鸟类初级视觉皮层的同源物。我们研究了对视叶进行电刺激对LM神经元活动的影响,并在通过注射利多卡因使视叶暂时失活之前、期间和之后记录了鸽子LM神经元的方向和时空调谐。对视叶进行电刺激时,LM神经元要么表现出短潜伏期兴奋后跟随长潜伏期抑制(W +细胞),要么仅表现出长潜伏期抑制(W -细胞)。W +和W -细胞的平均反应潜伏期分别为13.5毫秒和28.3毫秒。视叶刺激的效果与LM神经元的方向或时空调谐均无关联。向nBOR注射利多卡因可减少W +和W -细胞的长潜伏期振荡。当视叶被利多卡因暂时失活时,LM神经元的方向和时空反应特性均未受到影响。文中讨论了从视叶到LM的投射的可能功能。