Numminen Jussi, Schürmann Martin, Hiltunen Jaana, Joensuu Raimo, Jousmäki Veikko, Koskinen Seppo K, Salmelin Riitta, Hari Riitta
Brain Research Unit, Low Temperature Laboratory, Helsinki University of Technology, Espoo, Finland.
Neuroimage. 2004 Jun;22(2):815-21. doi: 10.1016/j.neuroimage.2004.02.011.
Tactile sensory memory is needed to infer shape or motion from the spatiotemporal pattern of sensory input during manual exploration. Here we applied triplets of pressure pulses to the fingertips of subjects who were asked to respond when successive triplets were the same (COMPARE task) or when a particular stimulus was included in a triplet (CONTROL task). Stimulus sequences (30 s) alternated with rest blocks (30 s) and functional magnetic resonance images (fMRIs) were acquired in a 1.5-T scanner. During the COMPARE task, we found enhanced activation in inferior parietal cortex, supplementary motor area (SMA), and right dorsolateral prefrontal cortex (DLPFC). Activation of DLPFC is likely to be related to the attempt to memorize the stimulus sequences and activations of SMA and inferior parietal cortex to the analysis of temporospatial tactile patterns and, more generally, to guidance of haptic exploration. In addition, task-specific activation was seen in anterior cingulate gyrus, possibly related to the high mental effort required by the comparison task. Our rhythmic tactile stimulus as such, without any task-specific enhancement, activated also left cerebellum and (mainly left) putamen, supporting the idea that these structures are related to perception of temporal order of tactile stimuli.
在手动探索过程中,需要触觉感觉记忆从感觉输入的时空模式中推断形状或运动。在这里,我们向受试者的指尖施加压力脉冲三元组,要求他们在连续的三元组相同时(比较任务)或三元组中包含特定刺激时(控制任务)做出反应。刺激序列(30秒)与休息块(30秒)交替出现,并在1.5-T扫描仪中采集功能磁共振图像(fMRI)。在比较任务期间,我们发现下顶叶皮质、辅助运动区(SMA)和右背外侧前额叶皮质(DLPFC)的激活增强。DLPFC的激活可能与记忆刺激序列的尝试有关,而SMA和下顶叶皮质的激活与颞空间触觉模式的分析有关,更一般地说,与触觉探索的指导有关。此外,在前扣带回中观察到任务特异性激活,这可能与比较任务所需的高脑力劳动有关。我们这样的有节奏的触觉刺激,在没有任何任务特异性增强的情况下,也激活了左小脑和(主要是左)壳核,支持了这些结构与触觉刺激时间顺序感知有关的观点。