参考无关运动事件相关非同步性的识别与分析。

IF 1.3 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Biomedical Physics & Engineering Express Pub Date : 2025-01-09 DOI:10.1088/2057-1976/ada1dc
Gabriel Chaves de Melo, Gabriela Castellano, Arturo Forner-Cordero
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引用次数: 0

摘要

表征与运动活动相关的脑电图(EEG)信号,如α和β波段运动事件相关去同步(ERDs),对脑机接口(BCI)的发展至关重要。确定检测ERD的最佳电极组合对于脑机接口的成功至关重要。考虑到脑电图信号是双极的,这涉及到主电极和参比电极的选择。到目前为止,没有一种保证信号不受参比电极活性影响的策略在科学界取得了共识。因此,根据主电极和参比电极的空间分布绘制ERD可以为BCI领域提供额外的视角。这项工作的目的是确定ERD与上肢运动任务启动的时间耦合的受试者特定通道。我们定义了一个标准来确定与运动开始相关的ERD的存在,并为每个受试者单独搜索具有最突出ERD的单一通道。在由一对电极组成的所有可用通道上进行搜索,并根据所选信号的时间和空间特征进行分析。我们发现,在头皮的非典型通道(电极对)中可以检测到与运动发作暂时相关的α和β波段ERD。不同受试者选择的通道不同。在ERD发生的瞬间,观察到四种ERD时间模式。这些模式表明M1皮层似乎与后期的erd有关。此外,它们还与运动任务相关的不同皮层过程有关。据我们所知,这是第一次报道这些发现。针对脑机接口的发展,需要对更多的受试者和运动意象任务进行进一步的实验,以提高这些发现的稳健性和适用性。
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Identification and analysis of reference-independent movement event-related desynchronization.

Characterization of the electroencephalography (EEG) signals related to motor activity, such as alpha- and beta-band motor event-related desynchronizations (ERDs), is essential for Brain Computer Interface (BCI) development. Determining the best electrode combination to detect the ERD is crucial for the success of the BCI. Considering that the EEG signals are bipolar, this involves the choice of the main and reference electrodes. So far, no strategy to guarantee signals free of the activity from the reference electrode has achieved consensus among the scientific community. Therefore, mapping the ERD in terms of the spatial distribution of the main and reference electrodes can provide additional perspectives for the BCI field. The goal of this work is to identify subject-specific channels where ERD is temporally coupled to the initiation of an upper-limb motor task. We defined a criterion to determine the presence of the ERD linked to the movement onset and searched, separately for each subject, for the single channel with the most prominent ERD. The search was conducted over all available channels composed by a pair of electrodes, and the selected signals were analyzed according to their temporal and spatial characteristics. We found that alpha- and beta-band ERD temporarily linked to movement onset can be detected in atypical channels (pairs of electrodes) across the scalp. The selected channels were different across subjects. Four ERD temporal patterns were observed in terms of the initiation instant of the ERD. These patterns revealed that the M1 cortex seems to be related to later ERDs. Moreover, they were also associated to different cortical processes related to the motor task. To the best of our knowledge, this is the first time these findings are reported. Aiming at BCI development, further experiments with more subjects and with motor-imagery tasks are desirable for more robustness and applicability of these findings.

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来源期刊
Biomedical Physics & Engineering Express
Biomedical Physics & Engineering Express RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
2.80
自引率
0.00%
发文量
153
期刊介绍: BPEX is an inclusive, international, multidisciplinary journal devoted to publishing new research on any application of physics and/or engineering in medicine and/or biology. Characterized by a broad geographical coverage and a fast-track peer-review process, relevant topics include all aspects of biophysics, medical physics and biomedical engineering. Papers that are almost entirely clinical or biological in their focus are not suitable. The journal has an emphasis on publishing interdisciplinary work and bringing research fields together, encompassing experimental, theoretical and computational work.
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