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Brain activity during visuomotor behavior triggered by arbitrary and spatially constrained cues: an fMRI study in humans

机译:由任意和空间受限的线索触发的视觉运动行为期间的大脑活动:人类的功能磁共振成像研究

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Rule-based behavior associating nonspatial visual stimuli with learned responses is called arbitrary visuomotor mapping, an ability that enriches behavioral repertoire. To better understand the underlying neural correlates, the present functional magnetic resonance imaging (fMRI) study explored brain activity during visually informed movement involving two different types of cues and two different effectors. After being trained on the tasks, six healthy subjects performed right or left finger tapping tasks according to either arbitrary cues or spatially constrained cues. An event-related fMRI experiment was conducted on a 3-T MRI. The image data were analyzed with statistical parametric mapping. With the aid of the probabilistic architectonic map in the stereotaxic space, we identified three types of task-related brain activity: cue-selective, effector-selective, and nonselective. The left ventrolateral prefrontal cortex and the rostral part of the right dorsal premotor cortex (PMd) exhibited cue-selective activity, which was greater during the arbitrary condition than the spatially constrained condition. The left ventral prefrontal activity may reflect retrieval of visuomotor association from memory in arbitrary context. The rostral part of the left PMd showed nonselective activity while the caudal part of the PMd on each side showed conspicuous effector-selective activity to the contralateral movement. These findings suggest functional demarcation of the PMd between its rostral and dorsal parts during visuomotor mapping.
机译:将非空间视觉刺激与学习到的响应相关联的基于规则的行为称为任意视觉运动贴图,该功能丰富了行为库。为了更好地理解潜在的神经相关性,目前的功能磁共振成像(fMRI)研究在涉及两种不同类型的线索和两种不同效应子的视觉知觉运动过程中探索了大脑活动。在完成任务训练后,六名健康受试者根据任意线索或空间受限线索执行了右手指或左手指轻敲任务。在3-T MRI上进行了事件相关的fMRI实验。用统计参数映射分析图像数据。借助立体定位空间中的概率结构图,我们确定了与任务相关的三种大脑活动类型:提示选择,效应选择和非选择。左前外侧前额叶皮层和右背前运动皮层(PMd)的延髓部分表现出提示选择性的活动,在任意条件下都大于空间约束条件。左腹前额叶活动可能反映了在任意情况下从记忆中获取视觉运动联想。左侧PMd的延髓部分表现出非选择性活性,而两侧的PMd的尾部则表现出对侧运动的显着效应物选择性活性。这些发现表明,在视觉运动作图过程中,PMd在其鼻端和背侧部分之间有功能划分。

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