Department of Biology, University of Pisa, Italy.
Department of Biology, University of Pisa, Italy.
Behav Brain Res. 2023 Jan 5;436:114073. doi: 10.1016/j.bbr.2022.114073. Epub 2022 Aug 27.
The aim of this study was to exploit detailed analyses of GPS-recorded tracks to better characterise the impact of hippocampal (HF) lesion on spatial memory and perception in the context of homing pigeon navigation when reliant on familiar landscape features near the home loft following repeated releases from the same three locations. As reported previously, following HF lesion, a low spatio-temporal resolution analysis revealed that homing pigeons fly less direct paths home once near the loft. We now further show that 1) HF-lesioned pigeons are less likely to display fidelity to a particular flight path home when released from the same locations multiple times, 2) intact pigeons are more likely to exploit leading-line landscape features, e.g., a road or the border of a woodlot, in developing flight-path fidelity and 3) even when flying a straight path HF-lesioned homing pigeons are more likely to display relatively rapid, oscillatory heading changes as if casting about for sensory, presumably visual information. The flight behaviour differences between the intact and HF-lesioned pigeons persisted across the four releases from the three locations, although the differences became smaller with increasing experience. Taken together, the GPS-track data offer a detailed characterisation of the effects of HF lesion on landscape-based, homing pigeon navigation, offering new insight into the role of the hippocampal formation in supporting memory-related, e.g., fidelity to a familiar route home, and perhaps perceptual-related, e.g., oscillating headings, navigational processes.
本研究旨在利用 GPS 记录的轨迹详细分析,更好地描述在依赖熟悉的鸽舍附近景观特征进行归巢导航的情况下,海马(HF)损伤对空间记忆和感知的影响,当鸽子从三个相同位置多次释放后。正如之前报道的,HF 损伤后,低时空分辨率分析表明,鸽子一旦接近鸽舍,回家的飞行路线就不那么直接了。我们现在进一步表明:1)HF 损伤的鸽子在从相同位置多次释放时,不太可能显示出对特定回家飞行路径的忠实性;2)完整的鸽子更有可能利用主导线景观特征,例如道路或林地边界,来发展飞行路径的忠实性;3)即使沿着直线飞行,HF 损伤的归巢鸽子也更有可能表现出相对快速、波动的航向变化,好像在寻找感官,可能是视觉信息。在来自三个地点的四次放飞中,完整和 HF 损伤鸽子之间的飞行行为差异持续存在,尽管随着经验的增加,差异变得更小。总的来说,GPS 轨迹数据对 HF 损伤对基于景观的鸽子归巢导航的影响进行了详细的描述,为海马结构在支持与记忆相关的导航过程,例如对熟悉回家路线的忠实性,以及可能与感知相关的导航过程,例如波动的航向,提供了新的见解。