Low-beta versus high-beta band cortico-subcortical coherence in movement inhibition and expectation.

IF 5.1 2区 医学 Q1 NEUROSCIENCES Neurobiology of Disease Pub Date : 2024-10-02 DOI:10.1016/j.nbd.2024.106689
Chunyan Cao, Vladimir Litvak, Shikun Zhan, Wei Liu, Chao Zhang, Bomin Sun, Dianyou Li, Bernadette C M van Wijk
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Abstract

Beta band oscillations in the sensorimotor cortex and subcortical structures, such as the subthalamic nucleus (STN) and internal pallidum (GPi), are closely linked to motor control. Recent research suggests that low-beta (14.5-23.5 Hz) and high-beta (23.5-35 Hz) cortico-STN coherence arise through distinct networks, possibly reflecting indirect and hyperdirect pathways. In this study, we sought to probe whether low- and high-beta coherence also exhibit different functional roles in facilitating and inhibiting movement. Twenty patients with Parkinson's disease who had deep brain stimulation electrodes implanted in either STN or GPi performed a classical go/nogo task while undergoing simultaneous magnetoencephalography and local field potentials recordings. Subjects' expectations were manipulated by presenting go- and nogo-trials with varying probabilities. We identified a lateral source in the sensorimotor cortex for low-beta coherence, as well as a medial source near the supplementary motor area for high-beta coherence. Task-related coherence time courses for these two sources revealed that low-beta coherence was more strongly implicated than high-beta coherence in the performance of go-trials. Accordingly, average pre-stimulus low-beta but not high-beta coherence or spectral power correlated with overall reaction time across subjects. High-beta coherence during unexpected nogo-trials was higher compared to expected nogo-trials at a relatively long latency of 3 s after stimulus presentation. Neither low- nor high-beta coherence showed a significant correlation with patients' symptom severity at baseline assessment. While low-beta cortico-subcortical coherence appears to be related to motor output, the role of high-beta coherence requires further investigation.

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运动抑制和期望中的低-贝塔带与高-贝塔带皮层-皮层下连贯性。
感觉运动皮层和皮层下结构(如丘脑下核(STN)和内苍白球(GPi))中的贝塔带振荡与运动控制密切相关。最近的研究表明,低贝塔(14.5-23.5 Hz)和高贝塔(23.5-35 Hz)皮质-STN 相干性是通过不同的网络产生的,可能反映了间接和超直接通路。在这项研究中,我们试图探究低β和高β相干性在促进和抑制运动方面是否也表现出不同的功能作用。20 名帕金森病患者在 STN 或 GPi 植入了深部脑刺激电极,他们在进行经典的 go/nogo 任务时同时进行了脑磁图和局部场电位记录。受试者的预期会受到不同概率的 "去 "和 "不去 "任务的影响。我们在感觉运动皮层发现了低贝塔相干性的外侧源,并在补充运动区附近发现了高贝塔相干性的内侧源。这两个来源的任务相关相干性时程显示,低-贝塔相干性比高-贝塔相干性更强烈地牵涉到go-trials的表现。因此,平均刺激前低贝塔相干性而非高贝塔相干性或频谱功率与受试者的总体反应时间相关。在刺激呈现后 3 秒的相对较长潜伏期内,与预期的 nogo-trials 相比,意外的 nogo-trials 过程中的高贝塔相干性更高。低β和高β相干性与基线评估时患者的症状严重程度均无明显相关性。虽然低-贝塔皮质-皮质下连贯性似乎与运动输出有关,但高-贝塔连贯性的作用还需要进一步研究。
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来源期刊
Neurobiology of Disease
Neurobiology of Disease 医学-神经科学
CiteScore
11.20
自引率
3.30%
发文量
270
审稿时长
76 days
期刊介绍: Neurobiology of Disease is a major international journal at the interface between basic and clinical neuroscience. The journal provides a forum for the publication of top quality research papers on: molecular and cellular definitions of disease mechanisms, the neural systems and underpinning behavioral disorders, the genetics of inherited neurological and psychiatric diseases, nervous system aging, and findings relevant to the development of new therapies.
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