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Spatial extent of beta oscillatory activity in and between the subthalamic nucleus and substantia nigra pars reticulata of Parkinson's disease patients

机译:丘脑下核和黑质网状结构之间和帕金森氏病患者之间的β振荡活动的空间范围

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Parkinson's disease (PD) is accompanied by a significant amount of β-band (11. Hz-30. Hz) neuronal and local field potential (LFP) oscillatory activity in the subthalamic nucleus (STN). Previous studies have shown significant coherence between neuronal firing and LFPs at β frequencies at sites separated by ~ 1 mm and that the magnitude of β oscillatory LFP activity and coherence are greatly reduced following levodopa administration. However, these data have been collected from large DBS contact electrodes or pairs of microelectrodes in proximity to each other and so it is not clear whether all regions of STN are synchronized. It is also not known whether the LFP and neuronal activity in the substantia nigra pars reticulata (SNr) shows β activity and whether it is coherent with STN activity. Therefore, the aim of this study was to measure the spatial extent of β coherent activity in the STN and coherence between STN and SNr in PD patients OFF levodopa by systematically varying the distance between the dual microelectrodes. A total of 170 pairs of recordings were collected from 20 patients at rest undergoing DBS-STN implantation surgery. Trajectories passed dorsoventrally through STN and into SNr using two microelectrodes initially ~ 1 mm apart. Once the microelectrodes entered the dorsal STN, one of the two was held stationary, while the other one was advanced into SNr over a distance of ~ 4-6 mm. Pairs of recordings were obtained from STN/STN (n=111), STN/SNr (n=42), and SNr/SNr (n=17). We confirmed previous reports of a progressive attenuation in β power as electrodes were driven from dorsal to ventral STN and into SNr. Furthermore, we found significant β-LFP coherence across the dorsoventral extent of STN. Detailed analysis suggested that at least some of the ventral STN and SNr beta activity was locally generated rather than arising from volume conduction from dorsal STN and thus suggests that β oscillations synchronize both the input and output nuclei of the basal ganglia.
机译:帕金森氏病(PD)在丘脑下核(STN)中伴有大量的β带(11. Hz-30。Hz)神经元和局部场电位(LFP)振荡活动。先前的研究表明,在间隔约1 mm的部位,β频率的神经元放电和LFP之间具有显着的连贯性,左旋多巴给药后,β振荡性LFP活性和连贯性的幅度大大降低。但是,这些数据是从大型DBS接触电极或成对的微电极对中收集的,因此尚不清楚STN的所有区域是否都同步。还不清楚黑质网状组织(SNr)中的LFP和神经元活性是否显示β活性以及它是否与STN活性一致。因此,本研究的目的是通过系统地改变双微电极之间的距离来测量PD患者左旋多巴中STN中β相干活性的空间范围以及STN和SNr之间的相干性。从20名静息DBS-STN植入手术的患者中收集了170对录音。轨迹通过背腹腔通过STN进入SNr,首先使用两个相距约1 mm的微电极。一旦微电极进入背侧STN,两个中的一个就保持不动,而另一个进入约4-6 mm的距离进入SNr。从STN / STN(n = 111),STN / SNr(n = 42)和SNr / SNr(n = 17)获得记录对。我们确认了以前的报道,即电极从背侧STN到腹侧STN进入SNr,β功率逐渐衰减。此外,我们发现STN背腹范围内明显的β-LFP相干性。详细的分析表明,至少部分腹侧STN和SNrβ活性是局部产生的,而不是由背侧STN的体积传导引起的,因此,表明β振荡使基底神经节的输入和输出核同步。

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