Kahn Meghan C, Siegel Jennifer J, Jechura Tammy J, Bingman Verner P
Department of Psychology, Bowling Green State University, Bowling Green, OH 43403, USA.
Behav Brain Res. 2008 Aug 22;191(2):153-63. doi: 10.1016/j.bbr.2008.03.023. Epub 2008 Mar 25.
The response properties of 48 right (n=24) and left (n=24) hippocampal formation (HF) cells were examined by recording from freely moving homing pigeons as they foraged in an open-field environment with unstable goal locations. Compared to previous results based on HF recordings from environments with stable goal locations, the spatial signal of the HF neurons recorded in the present study was substantially diminished; there was little indication of PATH cells found in previous HF recordings and nothing resembling place cells routinely recorded in rat hippocampus under similar conditions. However, lateralized response properties were detected. Right HF cells dramatically reduced their firing rates during a foraging session, resulting in very low reliability scores. By contrast, left HF cells maintained firing rates throughout sessions and displayed modestly higher reliability scores compared to right HF neurons. Notable was one striking group of cells (n=13), predominantly found in the right HF, that displayed rate maps characterized by numerous, discrete areas of above baseline firing rates, overall very low firing rates and higher specificity than other cells recorded in this study. Overall, the data emphasize the importance of stable goal locations in shaping the spatial response profile of homing pigeon HF neurons and demonstrate the persistence of lateralized response properties under conditions when space explains little of the temporal variation in firing rate.
通过记录自由活动的归巢鸽在目标位置不稳定的开阔场地环境中觅食时的情况,研究了48个右侧(n = 24)和左侧(n = 24)海马结构(HF)细胞的反应特性。与之前基于在目标位置稳定的环境中对HF进行记录的结果相比,本研究中记录的HF神经元的空间信号大幅减弱;几乎没有迹象表明在之前的HF记录中发现的路径细胞,也没有类似于在类似条件下大鼠海马体中常规记录的位置细胞的情况。然而,检测到了侧化反应特性。右侧HF细胞在觅食过程中显著降低了它们的放电率,导致可靠性得分非常低。相比之下,左侧HF细胞在整个过程中保持放电率,并且与右侧HF神经元相比显示出略高的可靠性得分。值得注意的是一组显著的细胞(n = 13),主要在右侧HF中发现,其速率图的特征是有许多高于基线放电率的离散区域,总体放电率非常低,并且比本研究中记录的其他细胞具有更高的特异性。总体而言,这些数据强调了稳定目标位置在塑造归巢鸽HF神经元空间反应特征方面的重要性,并证明了在空间对放电率的时间变化解释很少的条件下侧化反应特性的持续性。