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Characterization of Hand Clenching in Human Sensorimotor Cortex Using High- and Ultra-High Frequency Band Modulations of Electrocorticogram

机译:使用高和超高频皮层电图调制在人类感觉运动皮层中手握紧的特征。

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摘要

Functional mapping of eloquent cortex before the resection of a tumor is a critical procedure for optimizing survival and quality of life. In order to locate the hand area of the motor cortex in two patients with low-grade gliomas (LGG), we recorded electrocorticogram (ECoG) from a 113 channel hybrid high-density grid (64 large contacts with diameter of 2.7 mm and 49 small contacts with diameter of 1 mm) while they executed hand clenching movements. We investigated the spatio-spectral characteristics of the neural oscillatory activity and observed that, in both patients, the hand movements were consistently associated with a wide spread power decrease in the low frequency band (LFB: 8–32 Hz) and a more localized power increase in the high frequency band (HFB: 60–280 Hz) within the sensorimotor region. Importantly, we observed significant power increase in the ultra-high frequency band (UFB: 300–800 Hz) during hand movements of both patients within a restricted cortical region close to the central sulcus, and the motor cortical “hand knob.” Among all frequency bands we studied, the UFB modulations were closest to the central sulcus and direct cortical stimulation (DCS) positive site. Both HFB and UFB modulations exhibited different timing characteristics at different locations. Power increase in HFB and UFB starting before movement onset was observed mostly at the anterior part of the activated cortical region. In addition, the spatial patterns in HFB and UFB indicated a probable postcentral shift of the hand motor function in one of the patients. We also compared the task related subband modulations captured by the small and large contacts in our hybrid grid. We did not find any significant difference in terms of band power changes. This study shows initial evidence that event-driven neural oscillatory activity recorded from ECoG can reach up to 800 Hz. The spatial distribution of UFB oscillations was found to be more focalized and closer to the central sulcus compared to LFB and HFB. More studies are needed to characterize further the functional significance of UFB relative to LFB and HFB.
机译:切除肿瘤前雄辩的皮质功能映射是优化生存率和生活质量的关键程序。为了定位两名低度神经胶质瘤(LGG)患者运动皮层的手部区域,我们记录了113通道混合高密度网格(64个大触点,直径2.7 mm,49个小触点)的皮质电图(ECoG)。直径为1毫米的触点),同时他们执行手握紧动作。我们调查了神经振荡活动的时空频谱特征,并观察到,在这两名患者中,手部运动始终与低频频段(LFB:8–32 Hz)的较宽扩展功率下降和更局部的功率相关感觉运动区域内的高频带(HFB:60–280 Hz)增加。重要的是,我们观察到两名患者在靠近中央沟的受限皮质区域和运动皮质“手柄”的手部运动过程中,超高频频段(UFB:300–800 Hz)的功率显着增加。在我们研究的所有频带中,UFB调制最接近中央沟和直接皮层刺激(DCS)阳性部位。 HFB和UFB调制在不同位置均显示出不同的时序特性。在运动开始之前开始的HFB和UFB的功率增加主要在激活的皮质区域的前部观察到。此外,HFB和UFB中的空间模式表明其中一名患者的手运动功能可能在中心后移动。我们还比较了混合网格中大小接触所捕获的与任务相关的子带调制。在频带功率变化方面,我们没有发现任何显着差异。这项研究表明,从ECoG记录的事件驱动的神经振荡活动可以达到800 Hz的初步证据。与LFB和HFB相比,发现UFB振荡的空间分布更集中且更靠近中央沟。需要更多的研究来进一步表征UFB相对于LFB和HFB的功能重要性。

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