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Understanding Deep Brain Stimulation: In Vivo Metabolic Consequences of the Electrode Insertional Effect

机译:了解深层脑刺激:电极插入效应的体内代谢性后果。

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摘要

Deep brain stimulation (DBS) is a neurosurgery technique widely used in movement disorders, although its mechanism of action remains unclear. In fact, apart from the stimulation itself, the mechanical insertion of the electrode may play a crucial role. Here we aimed to distinguish between the insertional and the DBS effects on brain glucose metabolism. To this end, electrodes were implanted targeting the medial prefrontal cortex in five adult male Wistar rats. Positron Emission Tomography (PET) studies were performed before surgery (D0) and seven (D7) and nine days (D9) after that. DBS was applied during the 18FDG uptake of the D9 study. PET data were analysed with statistical parametric mapping. We found an electrode insertional effect in cortical areas, while DBS resulted in a more widespread metabolic pattern. The consequences of simultaneous electrode and DBS factors revealed a combination of both effects. Therefore, the insertion metabolic effects differed from the stimulation ones, which should be considered when assessing DBS protocols.
机译:深部脑刺激(DBS)是一种广泛用于运动障碍的神经外科技术,尽管其作用机理尚不清楚。实际上,除了刺激本身之外,电极的机械插入可能起关键作用。在这里,我们旨在区分插入和DBS对脑葡萄糖代谢的影响。为此,在五只成年雄性Wistar大鼠中植入了针对内侧前额叶皮层的电极。正电子发射断层扫描(PET)研究是在手术(D0)之前,术后7天(D7)和术后9天(D9)进行的。在D9研究的 18 FDG摄取过程中应用了DBS。使用统计参数映射分析PET数据。我们发现在皮质区域有电极插入作用,而DBS导致更广泛的代谢模式。电极和DBS因子同时发生的后果揭示了两种作用的组合。因此,插入代谢作用与刺激作用不同,在评估DBS方案时应考虑这一点。

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