Orzeł-Gryglewska Jolanta, Jurkowlaniec Edyta, Trojniar Weronika
Department of Animal Physiology, University of Gdańsk, Kładki 24, 80-822 Gdańsk, Poland.
Brain Res Bull. 2006 Jan 30;68(5):295-309. doi: 10.1016/j.brainresbull.2005.08.026. Epub 2005 Oct 17.
The midbrain ventral tegmental area (VTA), a key structure of the mesocorticolimbic system is anatomically connected with the hippocampal formation. In addition mesocortical dopamine was found to influence hippocampus-related memory and hippocampal synaptic plasticity, both being linked to the theta rhythm. Therefore, the aim of the present study was to evaluate the possible role of the VTA in the regulation of the hippocampal theta activity. The study was performed on urethane-anesthetized male Wistar rats in which theta rhythm was evoked by tail pinch. It was found that unilateral, temporal inactivation of the VTA by means of direct procaine injection resulted in bilateral suppression of the hippocampal theta which manifested as a loss of synchronization of hippocampal EEG and respective reduction of the power and also the frequency of the 3-6 Hz theta band. Depression of the power of the 3-6 Hz component of the EEG signal was also seen in spontaneous hippocampal EEG after procaine. The permanent destruction of the VTA by means of unilateral electrocoagulation evoked a long-lasting, mainly ipsilateral depression of the power of the theta with some influence on its frequency. Simultaneously, there was a substantial increase of the power in higher frequency bands indicating decrease of a synchrony of the hippocampal EEG activity. On the basis of these results indicating impairment of synchronization of the hippocampal activity the VTA may be considered as another part of the brainstem theta synchroning system.
中脑腹侧被盖区(VTA)是中脑边缘系统的关键结构,在解剖学上与海马结构相连。此外,发现中脑皮质多巴胺会影响与海马相关的记忆和海马突触可塑性,这两者都与θ节律有关。因此,本研究的目的是评估VTA在调节海马θ活动中的可能作用。该研究在经乌拉坦麻醉的雄性Wistar大鼠上进行,通过夹尾诱发θ节律。结果发现,通过直接注射普鲁卡因对VTA进行单侧、颞侧失活会导致海马θ的双侧抑制,表现为海马脑电图同步性丧失以及3-6Hz θ频段的功率和频率相应降低。在注射普鲁卡因后的自发海马脑电图中也观察到脑电图信号3-6Hz成分的功率降低。通过单侧电凝对VTA进行永久性破坏会引起θ功率的长期、主要是同侧抑制,并对其频率有一定影响。同时,高频段的功率大幅增加,表明海马脑电图活动的同步性降低。基于这些表明海马活动同步性受损的结果,VTA可被视为脑干θ同步系统的另一部分。