Nowacka A, Jurkowlaniec E, Trojniar W
Department of Animal Physiology, University of Gdańsk, Kładki 24, Gdańsk, Poland.
Brain Res Bull. 2002 Aug 15;58(4):377-84. doi: 10.1016/s0361-9230(02)00801-8.
It was found that the cholinergic component of the pedunculopontine tegmental nucleus (PPN) is involved in the generation of theta rhythm in the hippocampus. However, it is still not known how important PPN is in the brainstem theta-generating system, where the nucleus reticularis pontis oralis is regarded as a primary generator. In the present experiment, performed on urethane-anesthetized rats, we studied the effect on the tail pinch-elicited hippocampal theta of unilateral inactivation of PPN by means of direct procaine microinjection. Procaine induced ipsilateral suppression of theta rhythm, manifested as desynchronization of hippocampal EEG, a shift of the fast Fourier transformation (FFT) power peak toward lower frequencies, and a reduction of FFT peak magnitude at theta band. Hippocampal field activity returned to normal (both its FFT peak frequency and magnitude) within 30 min after the injection. The results obtained indicate that PPN is critical for hippocampal theta generation but it may not be involved in encoding theta frequency.
研究发现,脚桥被盖核(PPN)的胆碱能成分参与海马体中θ节律的产生。然而,PPN在脑干θ节律产生系统中的重要性仍不明确,在该系统中,脑桥嘴侧网状核被视为主要的节律发生器。在本实验中,我们对氨基甲酸乙酯麻醉的大鼠进行实验,通过直接微量注射普鲁卡因使PPN单侧失活,研究其对夹尾诱发的海马体θ节律的影响。普鲁卡因诱发同侧θ节律抑制,表现为海马脑电图去同步化、快速傅里叶变换(FFT)功率峰值向低频转移以及θ频段FFT峰值幅度降低。注射后30分钟内,海马场活动恢复正常(其FFT峰值频率和幅度均恢复正常)。所得结果表明,PPN对海马体θ节律的产生至关重要,但它可能不参与θ频率的编码。