Robertson R G, Rolls E T, Georges-François P, Panzeri S
Department of Experimental Psychology, University of Oxford, England.
Hippocampus. 1999;9(3):206-19. doi: 10.1002/(SICI)1098-1063(1999)9:3<206::AID-HIPO2>3.0.CO;2-H.
The function of the primate hippocampus and related structures was analysed by making recordings from the hippocampus, subiculum, presubiculum, and parahippocampal gyrus in monkeys actively walking in the laboratory. Head direction cells were found in the presubiculum. The firing rate of these cells was a function of the head direction of the monkey, with a response that was typically 10-100 times larger to the best as compared to the opposite direction. The mean half-amplitude width of the tuning of the cells was 76 degrees. The response of head direction cells in the presubiculum was not influenced by the place where the monkey was, there being the same tuning to head direction at different places in a room, and even outside the room. The response of these cells was also independent of the "spatial view" observed by the monkey, and also the position of the eyes in the head. The average information about head direction was 0.64 bits, about place was 0.10 bits, about spatial view was 0.27 bits, and about eye position was 0.04 bits. The cells maintained their tuning for periods of at least several minutes when the view details were obscured or the room was darkened. This representation of head direction could be useful together with the hippocampal spatial view cells and whole body motion cells found in primates in such spatial and memory functions as path integration.
通过在实验室中主动行走的猴子的海马体、下托、前下托和海马旁回进行记录,分析了灵长类动物海马体及相关结构的功能。在前下托中发现了头部方向细胞。这些细胞的放电频率是猴子头部方向的函数,与相反方向相比,对最佳方向的反应通常大10到100倍。细胞调谐的平均半峰宽度为76度。前下托中头部方向细胞的反应不受猴子所在位置的影响,在房间的不同位置甚至房间外,对头部方向的调谐都是相同的。这些细胞的反应也独立于猴子观察到的“空间视野”以及眼睛在头部的位置。关于头部方向的平均信息量为0.64比特,关于位置的为0.10比特,关于空间视野的为0.27比特,关于眼睛位置的为0.04比特。当视野细节被遮挡或房间变暗时,这些细胞至少能保持几分钟的调谐。这种头部方向的表征可能与灵长类动物中发现的海马体空间视野细胞和全身运动细胞一起,在诸如路径整合等空间和记忆功能中发挥作用。