However, these studies have produced varied findings 3, with little overlap 4. Previously several neuroimaging studies of creativity have been conducted. Given the wide import of creativity and its association with mental health across the life span 1, 2, it is quintessential to examine the neural networks associated with creative thinking so that novel interventions to foster creativity can be developed. Altogether, our data suggest that cerebral-cerebellar interaction underlying implicit processing of mental representations has a facilitative effect on spontaneous improvisation and figural creativity.Ĭreativity – the ability to create novel but appropriate outcomes, is considered as the driving force behind all human progress. Further, using parametric fMRI analysis, increasing subjective difficulty ratings for drawing the word engaged higher activations in the left pre-frontal cortices, whereas higher expert-rated creative content in the drawings was associated with increased engagement of bilateral cerebellum. Using the primary contrast of drawing a given word versus drawing a control word (zigzag), we observed increased engagement of cerebellum, thalamus, left parietal cortex, right superior frontal, left prefrontal and paracingulate/cingulate regions, such that activation in the cingulate and left prefrontal cortices negatively influenced task performance. Participants were engaged in the word-guessing game of Pictionary TM, using an MR-safe drawing tablet and no explicit instructions to be “creative”. ![]() ![]() A novel game-like and creativity-conducive fMRI paradigm is developed to assess the neural correlates of spontaneous improvisation and figural creativity in healthy adults.
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