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运用概率张量独立成分分析(TICA)重新评估手指运动表象时激活的脑网络。

Reevaluating brain networks activated during mental imagery of finger movements using probabilistic Tensorial Independent Component Analysis (TICA).

机构信息

Service de Neurologie et Neurorevalidation, Hôpital Erasme, ULB, Brussels, Belgium.

出版信息

Brain Imaging Behav. 2011 Jun;5(2):137-48. doi: 10.1007/s11682-011-9118-3.

Abstract

The cerebral and cerebellar networks involved in execution and mental imagery of the same sequential finger movements performed with the non-dominant hand were assessed by 3T functional magnetic resonance imaging using multivariate model-free analysis. Eight right-handed healthy volunteers successively performed execution and mental imagery tasks (sequential thumb to fingers opposition). The same data were analyzed by using (1) the linear General Model (p < 0.05 corrected), and (2) probabilistic tensorial independent component analysis (TICA). TICA confirmed that overt movement execution and motor imagery share a common network mainly including: premotor, parietal, insular, temporal, cerebellar cortices and putamen. Motor imagery specifically and bilaterally recruited frontopolar, prefrontal, cingulate, medial insula, neocerebellar cortices and precuneus. Non-dominant hand movements induced bilateral brain and cerebellar activation. In comparison with GLM, TICA identified a more widespread and bilateral network especially during motor imagery. TICA revealed that motor imagery also recruits frontopolar precuneal and occipital cortices, rostral M1/S1 corresponding to the hand somatotopic representation, thalamus and cerebellar lobule VIII. TICA also showed concomitant activation of (1) a cerebello-thalamo-cortical network during motor execution, and (2) a control executive network during imagination. TICA therefore allows precise identification of the brain networks collaborating in the same performance. TICA constitutes a valuable tool to assess and improve detection of brain networks engaged in mental imagery in comparison with GLM.

摘要

使用 3T 功能磁共振成像,通过多元无模型分析评估了用非优势手执行和心理意象相同的顺序手指运动涉及的大脑和小脑网络。8 名右利手健康志愿者依次执行执行和心理意象任务(顺序拇指到手指对立)。使用(1)线性一般模型(校正后 p < 0.05)和(2)概率张量独立成分分析(TICA)分析相同的数据。TICA 证实,显性运动执行和运动想象共享一个共同的网络,主要包括:运动前皮质、顶叶、脑岛、颞叶、小脑皮质和壳核。运动想象特别双侧招募额极、前额叶、扣带回、内侧脑岛、新小脑皮质和楔前叶。非优势手运动诱导双侧大脑和小脑激活。与 GLM 相比,TICA 确定了一个更广泛和双侧的网络,特别是在运动想象期间。TICA 表明,运动想象还招募额极楔前叶和枕叶皮质、与手部躯体代表相对应的 M1/S1 喙部、丘脑和小脑小叶 VIII。TICA 还显示出(1)运动执行期间的小脑-丘脑-皮质网络和(2)想象期间的控制执行网络的同时激活。因此,TICA 允许精确识别在相同表现中协作的大脑网络。与 GLM 相比,TICA 构成了评估和改善心理意象所涉及的大脑网络检测的有价值工具。

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