Warburton E C, Baird A L, Morgan A, Muir J L, Aggleton J P
School of Psychology, University of Cardiff, Wales CF10 3YG, UK.
Eur J Neurosci. 2000 May;12(5):1714-26. doi: 10.1046/j.1460-9568.2000.00039.x.
A disconnection procedure was used to test whether projections from the hippocampus to the anterior thalamic nuclei (AT), via the fimbria-fornix (FX), form functional components of a spatial memory system. The behavioural effects of combined unilateral lesions in the AT and FX were compared when they were either in contralateral hemispheres (AT-FX Contra) or the same hemisphere (AT-FX Ipsi). Other groups received bilateral FX lesions and Sham surgeries. Expt 1 demonstrated that none of these lesions affected performance of an object recognition task, while performance of an object location task, which tests the subjects' preference for an object that has changed location, was impaired in the AT-FX Contra and FX groups. In a T-maze alternation task, however, the FX group was severely impaired while both the AT-FX Ipsi and AT-FX Contra lesion groups showed only a mild impairment. In order to test whether spared crossed projections might support spatial performance in the AT-FX Contra group we then examined the effects of a combined AT-FX Contra lesion coupled with transection of the hippocampal commissure. This combination of lesions produced a severe disruption in spatial memory performance in the water maze, radial arm maze and T-maze, which was significantly greater than that produced by ipsilateral and contralateral AT-FX lesions alone. These results support the notion that disconnection of the AT from their hippocampal inputs produces impairments on a range of spatial memory tasks, but indicate that there are an array of different routes that can subserve this function.
采用一种切断手术来测试从海马体经穹窿-海马伞(FX)投射到丘脑前核(AT)的神经通路是否构成空间记忆系统的功能组件。比较了AT和FX联合单侧损伤在对侧半球(AT-FX对侧)或同侧半球(AT-FX同侧)时的行为效应。其他组接受双侧FX损伤和假手术。实验1表明,这些损伤均未影响物体识别任务的表现,而测试受试者对位置改变的物体偏好的物体定位任务的表现,在AT-FX对侧组和FX组中受损。然而在T迷宫交替任务中,FX组严重受损而AT-FX同侧组和AT-FX对侧损伤组仅表现出轻微损伤。为了测试保留的交叉投射是否可能支持AT-FX对侧组的空间表现,我们随后检查了联合AT-FX对侧损伤并切断海马连合的效应。这种联合损伤在水迷宫、放射状臂迷宫和T迷宫中导致空间记忆表现严重受损,这明显大于单独同侧和对侧AT-FX损伤所产生的损伤。这些结果支持这样一种观点,即切断AT与其海马输入的联系会导致一系列空间记忆任务受损,但表明有一系列不同的途径可以实现这一功能。