Kirk I J, Oddie S D, Konopacki J, Bland B H
Department of Psychology, University of Calgary, Alberta, Canada.
J Neurosci. 1996 Sep 1;16(17):5547-54. doi: 10.1523/JNEUROSCI.16-17-05547.1996.
Single-unit discharge was recorded from cells in the posterior hypothalamic nucleus (PH), supramammillary nucleus (SuM), and medial mammillary nucleus (MM) during hippocampal theta (theta) elicited by stimulation of the reticular nucleus pontis oralis (RPO). In agreement with previously published work, theta-related cells in the PH (12 cells) were all classified as tonic theta-ON (increased tonic discharge rate during hippocampal theta), whereas those in the SuM (9 cells) and MM (15 cells) were all classified as phasic theta-ON (rhythmic discharge, in phase with ongoing theta). The effect of RPO stimulation on cell discharge was tested after hippocampal theta was abolished by infusion of procaine into the medial septum/vertical limb of the diagonal band. The RPO-elicited discharge patterns of all PH tonic theta-ON cells and all SuM phasic theta-ON cells survived septal procaine infusion. Further, the discharge rate of PH cells and the frequency of burst discharge of SuM cells during RPO stimulation both increased after the infusion. In contrast, septal procaine infusion abolished the RPO-elicited rhythmic discharge pattern in MM phasic theta-ON cells and attenuated their discharge rates. These results indicate that the PH and SuM form parts of an ascending system mediating hippocampal theta, whereas the MM receives (and perhaps relays to other parts of the limbic system) rhythmic input descending from the septo-hippocampal system. In addition, PH and SuM receive descending inputs that limit the discharge rates of their theta-related cells during hippocampal theta.
在刺激脑桥嘴侧网状核(RPO)诱发海马θ波期间,记录下丘脑后核(PH)、乳头体上核(SuM)和乳头体内侧核(MM)中细胞的单单位放电。与先前发表的研究一致,PH中的θ波相关细胞(12个细胞)均被分类为紧张性θ波开启型(在海马θ波期间紧张性放电率增加),而SuM(9个细胞)和MM(15个细胞)中的细胞均被分类为相位性θ波开启型(与正在进行的θ波同相位的节律性放电)。在内侧隔区/斜角带垂直支注入普鲁卡因消除海马θ波后,测试RPO刺激对细胞放电的影响。所有PH紧张性θ波开启型细胞和所有SuM相位性θ波开启型细胞的RPO诱发放电模式在隔区注入普鲁卡因后依然存在。此外,注入后,RPO刺激期间PH细胞的放电率和SuM细胞的爆发放电频率均增加。相比之下,隔区注入普鲁卡因消除了MM相位性θ波开启型细胞中RPO诱发的节律性放电模式,并减弱了它们的放电率。这些结果表明,PH和SuM构成介导海马θ波的上行系统的一部分,而MM接收(并可能中继至边缘系统的其他部分)来自隔区-海马系统的下行节律性输入。此外,PH和SuM在海马θ波期间接收下行输入,这些输入限制其θ波相关细胞的放电率。