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人类自主吞咽过程中的皮质激活:一项事件相关功能磁共振成像研究。

Cortical activation during human volitional swallowing: an event-related fMRI study.

作者信息

Hamdy S, Mikulis D J, Crawley A, Xue S, Lau H, Henry S, Diamant N E

机构信息

Department of Gastroenterology, Playfair Institute of Neuroscience, Toronto Western Hospital, University of Toronto, Toronto, Ontario, Canada M5T 2S8.

出版信息

Am J Physiol. 1999 Jul;277(1):G219-25. doi: 10.1152/ajpgi.1999.277.1.G219.

Abstract

Functional magnetic resonance imaging (fMRI) provides a safe, noninvasive method for studying task-related cortical neuronal activity. Because the cerebral cortex is strongly implicated in the control of human swallowing, we sought to identify its functional neuroanatomy using fMRI. In 10 healthy volunteers, a swallow event-related paradigm was performed by injecting 5 ml water bolus into the oral cavity every 30 s. Whole brain functional magnetic susceptibility -weighted spiral imaging data were simultaneously acquired over 600 s on a 1.5-T magnetic resonance scanner, utilizing the blood oxygenation level-dependent technique, and correlation maps were generated using both >99% percentile rank and spatial extent thresholding. We observed areas of increased signal change consistently in caudal sensorimotor cortex, anterior insula, premotor cortex, frontal operculum, anterior cingulate and prefrontal cortex, anterolateral and posterior parietal cortex, and precuneus and superiomedial temporal cortex. Less consistent activations were also seen in posterior cingulate cortex and putamen and caudate nuclei. Activations were bilateral, but almost every region, particularly the premotor, insular, and frontal opercular cortices, displayed lateralization to one or the other hemisphere. Swallow-related cortical activity is multidimensional, recruiting brain areas implicated in processing motor, sensory, and attention/affective aspects of the task.

摘要

功能磁共振成像(fMRI)为研究与任务相关的皮质神经元活动提供了一种安全、无创的方法。由于大脑皮质与人类吞咽控制密切相关,我们试图使用fMRI来确定其功能神经解剖结构。在10名健康志愿者中,通过每30秒向口腔内注入5毫升水团块来进行吞咽事件相关范式。在一台1.5-T磁共振扫描仪上,利用血氧水平依赖技术,在600秒内同时采集全脑功能磁共振血管造影加权螺旋成像数据,并使用>99%百分位数排名和空间范围阈值生成相关图谱。我们在尾侧感觉运动皮质、前岛叶、运动前皮质、额盖、前扣带回和前额叶皮质、前外侧和后顶叶皮质以及楔前叶和颞上内侧皮质中持续观察到信号变化增加的区域。在后扣带回皮质、壳核和尾状核中也观察到不太一致的激活。激活是双侧的,但几乎每个区域,特别是运动前皮质、岛叶皮质和额盖皮质,都表现出向一个或另一个半球的侧化。与吞咽相关的皮质活动是多维度的,涉及到参与处理该任务的运动、感觉和注意力/情感方面的脑区。

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