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首页> 外文期刊>NeuroImage >Synchronized electrical stimulation of the rat medial forebrain bundle and perforant pathway generates an additive BOLD response in the nucleus accumbens and prefrontal cortex
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Synchronized electrical stimulation of the rat medial forebrain bundle and perforant pathway generates an additive BOLD response in the nucleus accumbens and prefrontal cortex

机译:大鼠内侧前脑束和穿孔通路的同步电刺激在伏隔核和前额叶皮层产生加性BOLD反应

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摘要

To study how a synchronized activation of two independent pathways affects the fMRI response in a common targeted brain region, blood oxygen dependent (BOLD) signals were measured during electrical stimulation of the right medial forebrain bundle (MFB), the right perforant pathway (PP) and concurrent stimulation of the two fiber systems. Repetitive electrical stimulations of the MFB triggered significant positive BOLD responses in the nucleus accumbens (NAcc), septum, anterior cingulate cortex/medial prefrontal cortex (ACC/mPFC), ventral tegmental area/substantia nigra (VTA/SN), right entorhinal cortex (EC) and colliculus superior, which, in general, declined during later stimulation trains. At the same time, negative BOLD responses were observed in the striatum. Thus, the same stimulus caused region-specific hemodynamic responses. An identical electrical stimulation of the PP generated positive BOLD responses in the right dentate gyrus/hippocampus proper/subiculum (DG/HC), the right entorhinal cortex and the left entorhinal cortex, which remained almost stable during consecutive stimulation trains. Co-stimulation of the two fiber systems resulted in an additive activation pattern, i.e., the BOLD responses were stronger during the stimulation of the two pathways than during the stimulation of only one pathway. However, during the simultaneous stimulation of the two pathways, the development of the BOLD responses to consecutive trains changed. The BOLD responses in regions that were predominantly activated by MFB stimulation (i.e., NAcc, septum and ACC/mPFC) did not decline as fast as during pure MFB stimulation, thus an additive BOLD response was only observed during later trains. In contrast, in the brain regions that were predominantly activated by PP stimulation (i.e., right EC, DG/HC), co-stimulation of the MFB only resulted in an additive effect during early trains but not later trains. Consequently, the development of the BOLD responses during consecutive stimulations indicates the presence of an interaction between the two pathways in a target region, whereas the observed averaged BOLD responses do not.
机译:为了研究两个独立通路的同步激活如何影响共同靶向大脑区域的fMRI反应,在电刺激右前脑内侧束(MFB),右穿孔通路(PP)的过程中测量了血氧依赖性(BOLD)信号同时刺激两个纤维系统。 MFB的重复电刺激在伏伏核(NAcc),隔垫,前扣带回皮层/内侧前额叶皮层(ACC / mPFC),腹侧被盖区/黑质(VTA / SN),右内嗅皮层( EC和上丘,通常在后来的刺激训练中下降。同时,在纹状体中观察到负的BOLD响应。因此,相同的刺激引起区域特异性的血液动力学反应。对PP的相同电刺激在右齿状回/海马固有/滑膜(DG / HC),右内嗅皮层和左内嗅皮层中产生积极的BOLD响应,在连续的刺激过程中它们几乎保持稳定。两种纤维系统的共同刺激导致加性激活模式,即在刺激两种途径期间,BOLD反应比仅刺激一种途径时更强。然而,在同时刺激这两个途径的过程中,对连续列车的BOLD反应的发展发生了变化。在主要受MFB刺激激活的区域(即NAcc,隔垫和ACC / mPFC)中,BOLD响应的下降速度不如纯MFB刺激时那样快,因此仅在以后的火车中观察到了加性BOLD响应。相反,在主要由PP刺激激活的大脑区域(即右EC,DG / HC)中,MFB的共同刺激仅在早期训练中产生加性作用,而在后来的训练中不产生加性作用。因此,在连续刺激过程中,BOLD反应的发展表明目标区域中两条途径之间存在相互作用,而观察到的平均BOLD反应则没有。

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