Nikonov Alexander A, Parker James M, Caprio John
Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana 70803, USA.
J Neurosci. 2002 Mar 15;22(6):2352-62. doi: 10.1523/JNEUROSCI.22-06-02352.2002.
Peripheral waves (PWs) in the channel catfish are odorant-induced neural oscillations of synchronized populations of olfactory receptor neurons (ORNs) that appear after the initial approximately 500 msec of the response. The mean dominant frequency during the initial 2 sec of PW activity is approximately 28 Hz, declining to approximately 20 Hz in the last sec of a 5 sec stimulus. Recordings of PWs from different regions of a single olfactory lamella and simultaneously from widely separated lamellae within the olfactory organ suggest that PWs are initiated in the sensory epithelium within each olfactory lamella. Simultaneous recordings in vivo from the olfactory organ [electro-olfactogram (EOG) or integrated neural activity], local field potentials (LFPs) from the olfactory bulb (OB), and single and few-unit activity from OB neurons were performed. Cross-correlation analysis of simultaneously recorded odor-induced OB LFPs and either EOG or ORN neural activity showed that oscillations occurring within the OB were lower (<20 Hz) than those of PWs; however, during PW activity, OB LFPs increased both their magnitude and dominant frequencies and became correlated with the PWs. Also during odorant-induced PW activity, the responses of different OB neurons with similar odorant specificity became phase locked to each other and to both the PWs and OB LFPs. PWs are hypothesized to function to strengthen the synaptic transfer of olfactory information at specific glomeruli within the OB.
沟鲶的外周波(PWs)是由气味诱导的嗅觉受体神经元(ORN)同步群体的神经振荡,出现在初始约500毫秒的反应之后。PW活动最初2秒内的平均主导频率约为28赫兹,在5秒刺激的最后一秒降至约20赫兹。从单个嗅板不同区域以及同时从嗅器官内相距较远的嗅板记录PW,结果表明PW在每个嗅板的感觉上皮中起始。对嗅器官进行了体内同步记录[电嗅图(EOG)或综合神经活动]、嗅球(OB)的局部场电位(LFPs)以及OB神经元的单单位和少数单位活动。对同时记录的气味诱导的OB LFPs与EOG或ORN神经活动进行互相关分析,结果显示OB内发生的振荡频率低于PW(<20赫兹);然而,在PW活动期间,OB LFPs的幅度和主导频率均增加,并与PW相关。同样在气味诱导的PW活动期间,具有相似气味特异性的不同OB神经元的反应彼此之间以及与PW和OB LFPs都形成了锁相。据推测,PW的作用是加强在OB内特定肾小球处嗅觉信息的突触传递。