首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Local field potentials of subthalamic nucleus contain electrophysiological footprints of motor subtypes of Parkinson’s disease
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PNAS Plus: Local field potentials of subthalamic nucleus contain electrophysiological footprints of motor subtypes of Parkinson’s disease

机译:PNAS Plus:丘脑底核的局部电场电位包含帕金森氏病运动亚型的电生理足迹

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摘要

Although motor subtypes of Parkinson’s disease (PD), such as tremor dominant (TD) and postural instability and gait difficulty (PIGD), have been defined based on symptoms since the mid-1990s, no underlying neural correlates of these clinical subtypes have yet been identified. Very limited data exist regarding the electrophysiological abnormalities within the subthalamic nucleus (STN) that likely accompany the symptom severity or the phenotype of PD. Here, we show that activity in subbands of local field potentials (LFPs) recorded with multiple microelectrodes from subterritories of STN provide distinguishing neurophysiological information about the motor subtypes of PD. We studied 24 patients with PD and found distinct patterns between TD (n = 13) and PIGD (n = 11) groups in high-frequency oscillations (HFOs) and their nonlinear interactions with beta band in the superior and inferior regions of the STN. Particularly, in the superior region of STN, the power of the slow HFO (sHFO) (200–260 Hz) and the coupling of its amplitude with beta-band phase were significantly stronger in the TD group. The inferior region of STN exhibited fast HFOs (fHFOs) (260–450 Hz), which have a significantly higher center frequency in the PIGD group. The cross-frequency coupling between fHFOs and beta band in the inferior region of STN was significantly stronger in the PIGD group. Our results indicate that the spatiospectral dynamics of STN-LFPs can be used as an objective method to distinguish these two motor subtypes of PD. These observations might lead to the development of sensing and stimulation strategies targeting the subterritories of STN for the personalization of deep-brain stimulation (DBS).
机译:尽管自1990年代中期以来就已根据症状定义了帕金森氏病(PD)的运动亚型,例如震颤优势(TD),姿势不稳和步态困难(PIGD),但尚未发现这些临床亚型的潜在神经相关性确定。关于丘脑下核(STN)内可能伴随PD症状严重程度或表型的电生理异常的数据非常有限。在这里,我们表明,用来自STN子地区的多个微电极记录的局部场电势(LFP)子带中的活动提供了有关PD运动亚型的独特神经生理信息。我们研究了24例PD患者,发现在高频振荡(HFO)中TD(n = 13)和PIGD(n = 11)组之间的模式明显不同,并且它们与STN上部和下部的β谱带发生非线性相互作用。特别是,在STN的较高区域,TD组的慢HFO(sHFO)(200–260 Hz)的功率及其幅度与β波段相位的耦合明显更强。 STN的下方区域显示快速HFO(fHFO)(260–450 Hz),在PIGD组中中心频率明显更高。 PIGD组中fHFO和STN下部β谱带之间的交叉频率耦合明显更强。我们的结果表明,STN-LFPs的时空光谱动力学可以用作区分PD的这两种运动亚型的客观方法。这些观察结果可能会导致针对深部神经刺激(DBS)个性化的STN子区域的感知和刺激策略的发展。

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