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解读手腕运动期间的大脑激活:主动、被动和想象状态的功能磁共振成像与功能近红外光谱对比分析

Deciphering brain activation during wrist movements: comparative fMRI and fNIRS analysis of active, passive, and imagery states.

作者信息

Jalalvandi Maziar, Sharini Hamid, Shafaghi Lida, Alam Nader Riyahi

机构信息

Department of Neuroscience and Addiction Studies, School of Advanced Technologies in Medicine, Tehran University of Medical Sciences, Tehran, Iran.

Department of Biomedical Engineering, School of Medicine, Kermanshah University of Medical Sciences, Kermanshah, Iran.

出版信息

Exp Brain Res. 2024 Dec 31;243(1):36. doi: 10.1007/s00221-024-06977-7.

Abstract

Understanding the complex activation patterns of brain regions during motor tasks is crucial. Integrated functional magnetic resonance imaging (fMRI) and functional near-infrared spectroscopy (fNIRS) offers advanced insights into how brain activity fluctuates with motor activities. This study explores neuronal activation patterns in the cerebral cortex during active, passive, and imagined wrist movements using these functional imaging techniques. Data were collected from 10 right-handed volunteers performing a motor task using fMRI and fNIRS. fMRI utilized a 3T scanner and a 20-channel head coil, while fNIRS recorded data with a 48-channel device at 765 nm and 855 nm. Analysis focused on key motor and sensory cortices using NIRS-SPM and SPM12, applying a significance threshold of p < 0.05 and a minimum cluster size of 10 voxels for group analysis. Super-threshold voxels were identified with FWE thresholding in SPM12. For activation map extraction we focused on the primary motor cortex, primary somatosensory cortex, somatosensory association cortex, premotor cortex, and supplementary motor cortex. Both fMRI and fNIRS detected activation in the primary motor cortex (M1). The primary somatosensory cortex was found to influence movement direction coding, with smaller activation sizes for upward movements. Combining fNIRS with fMRI provided clearer differentiation of brain activation patterns for wrist movements in various directions and conditions (p < 0.05). This study highlights variations in left motor cortex activity across different movement states. fNIRS proved effective in detecting brain function and showed strong correlation with fMRI results, suggesting it as a viable alternative for those unable to undergo fMRI.

摘要

了解运动任务期间大脑区域的复杂激活模式至关重要。功能磁共振成像(fMRI)和功能近红外光谱(fNIRS)相结合,为大脑活动如何随运动活动波动提供了深入见解。本研究使用这些功能成像技术,探索主动、被动和想象的手腕运动期间大脑皮层中的神经元激活模式。数据收集自10名右利手志愿者,他们使用fMRI和fNIRS执行一项运动任务。fMRI使用3T扫描仪和20通道头部线圈,而fNIRS使用48通道设备在765nm和855nm处记录数据。分析使用NIRS-SPM和SPM12聚焦于关键运动和感觉皮层,在组分析中应用p < 0.05的显著性阈值和10体素的最小簇大小。在SPM12中使用FWE阈值确定超阈值体素。对于激活图提取,我们聚焦于初级运动皮层、初级躯体感觉皮层、躯体感觉联合皮层、运动前皮层和辅助运动皮层。fMRI和fNIRS均检测到初级运动皮层(M1)的激活。发现初级躯体感觉皮层影响运动方向编码,向上运动的激活大小较小。将fNIRS与fMRI相结合,能更清晰地区分不同方向和条件下手腕运动的大脑激活模式(p < 0.05)。本研究突出了不同运动状态下左侧运动皮层活动的差异。fNIRS被证明在检测脑功能方面有效,且与fMRI结果显示出强相关性,这表明它是那些无法进行fMRI检查者的可行替代方法。

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