Reinhardt W, Konda N, MacLeod N, Ellendorff F
Exp Brain Res. 1981;43(1):1-10. doi: 10.1007/BF00238804.
To analyse fibre connections between the olfactory bulb (OB) and limbic-hypothalamic structures, the lateral olfactory tract (LOT) was stimulated electrically and extracellular action potentials were recorded from single units in the OB, the cortico-medial portion of the amygdala (AMY) and the mediobasal hypothalamus (MBH). More than 29% of the antidromically identified mitral cells in the OB showed a spontaneous episodic firing pattern consisting of alternating periods of activity and inactivity. Nearly 14% of the orthodromically excited non-mitral cells showed the same phasic firing pattern. 2.9% of AMY neurons were antidromically activated by LOT stimulation, whereas more than 52% showed orthodromic responses. In contrast to the AMY no neuron in the MBH could be antidromically invaded by electrical stimulation. The incidence of orthodromic responses was much less in the MBH when compared to the AMY (13.5%). It is concluded that the firing pattern of OB cells in the pig is complex, often phasic and unrelated to respiration or sniffing. The main OB is more closely related to the AMY than to the MBH. It is suggested that olfactory information is probably transmitted to the MBH via the AMY. The AMY may play a role in the regulation of OB activity.
为分析嗅球(OB)与边缘下丘脑结构之间的纤维连接,对外侧嗅束(LOT)进行电刺激,并记录OB、杏仁核(AMY)皮质内侧部分和内侧基底下丘脑(MBH)单个神经元的细胞外动作电位。OB中超过29%的逆向鉴定的二尖瓣细胞呈现出由活动期和静止期交替组成的自发发作性放电模式。近14%的顺向兴奋的非二尖瓣细胞表现出相同的相位放电模式。2.9%的AMY神经元通过LOT刺激被逆向激活,而超过52%表现出顺向反应。与AMY相反,MBH中没有神经元能被电刺激逆向侵入。与AMY相比,MBH中顺向反应的发生率要低得多(13.5%)。得出结论,猪OB细胞的放电模式复杂,通常呈相位性且与呼吸或嗅吸无关。主要OB与AMY的关系比与MBH的关系更密切。提示嗅觉信息可能通过AMY传递至MBH。AMY可能在OB活动的调节中起作用。