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首页> 外文期刊>Neurobiology of disease >Synchronised spiking activity underlies phase amplitude coupling in the subthalamic nucleus of Parkinson's disease patients
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Synchronised spiking activity underlies phase amplitude coupling in the subthalamic nucleus of Parkinson's disease patients

机译:同步尖峰活动下潜相位升级偶联在帕金森病患者的细胞核中

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摘要

Both phase-amplitude coupling (PAC) and beta-bursts in the subthalamic nucleus have been significantly linked to symptom severity in Parkinson's disease (PD) in humans and emerged independently as competing biomarkers for closed-loop deep brain stimulation (DBS). However, the underlying nature of subthalamic PAC is poorly understood and its relationship with transient beta burst-events has not been investigated. To address this, we studied macro- and micro electrode recordings of local field potentials (LFPs) and single unit activity from 15 hemispheres in 10 PD patients undergoing DBS surgery. PAC between beta phase and high frequency oscillation (HFO) amplitude was compared to single unit firing rates, spike triggered averages, power spectral densities, inter spike intervals and phase-spike locking, and was studied in periods of beta-bursting. We found a significant synchronisation of spiking to HFOs and correlation of mean firing rates with HFO-amplitude when the latter was coupled to beta phase (i.e. in the presence of PAC). In the presence of PAC, single unit power spectra displayed peaks in the beta and HFO frequency range and the HFO frequency was correlated with that in the LFP. Furthermore, inter spike interval frequencies peaked in the same frequencies for which PAC was observed. Finally, PAC significantly increased with beta burst-duration. Our findings offer new insight in the pathology of Parkinson's disease by providing evidence that subthalamic PAC reflects the locking of spiking activity to network beta oscillations and that this coupling progressively increases with beta-burst duration. These findings suggest that beta-bursts capture periods of increased subthalamic input/output synchronisation in the beta frequency range and have important implications for therapeutic closed-loop DBS.
机译:在氨基甲核中的相位振焦(PAC)和β-爆发中的两种相位振荡偶联(PAC)和β-爆发与帕金森病(PD)中的症状严重程度与人类的症状严重程度与闭环深脑刺激(DBS)的竞争生物标志物独立出现。然而,次粒子PAC的潜在性质尚未理解,并且尚未调查与瞬态β爆发事件的关系。为了解决这一点,我们研究了局部场电位(LFP)的宏观和微电极记录,并在10个PD患者接受DBS手术中的15例半球的单位活性。将Beta相位和高频振荡(HFO)振幅之间的PAC与单位射击率进行比较,尖峰触发平均值,功率谱密度,间尖端间隔和相位尖峰锁定,并在β-爆发时段中研究。我们发现,当后者与β相结合时,尖刺到HFOS与HFOS的相关性和平均烧制率与HFO振幅的相关性(即在PAC的存在下)。在PAC的存在下,单位功率谱在Beta和HFO频率范围内显示峰值,并且HFO频率与LFP中的频率相关。此外,在观察到PAC的相同频率中达到峰值的间峰间隔频率。最后,PAC随着β爆发持续时间显着增加。我们的调查结果通过提供亚马逊PAC反映尖刺活动对网络β振荡的锁定来提供新的洞察力,并通过β-突发持续时间来逐渐增加。这些发现表明,在β频率范围内增加了分段输入/输出同步的抑制周期,对治疗性闭环DB具有重要意义。

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  • 来源
    《Neurobiology of disease》 |2019年第2019期|共13页
  • 作者单位

    Univ Oxford MRC Brain Network Dynam Unit Mansfield Rd Oxford OX1 3TH England;

    Univ Med Ctr Hamburg Eppendorf Dept Neurophysiol &

    Pathophysiol D-20246 Hamburg Germany;

    Univ Amsterdam Dept Psychol Integrat Model Based Cognit Neurosci Res Unit NL-1001 NK Amsterdam;

    Univ Med Ctr Hamburg Eppendorf Dept Neurophysiol &

    Pathophysiol D-20246 Hamburg Germany;

    Univ Oxford MRC Brain Network Dynam Unit Mansfield Rd Oxford OX1 3TH England;

    Univ Med Ctr Hamburg Eppendorf Dept Neurosurg D-20246 Hamburg Germany;

    Univ Med Ctr Hamburg Eppendorf Dept Neurophysiol &

    Pathophysiol D-20246 Hamburg Germany;

    Univ Med Ctr Hamburg Eppendorf Dept Neurosurg D-20246 Hamburg Germany;

    Univ Oxford MRC Brain Network Dynam Unit Mansfield Rd Oxford OX1 3TH England;

    Univ Oxford MRC Brain Network Dynam Unit Mansfield Rd Oxford OX1 3TH England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学;
  • 关键词

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