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Differentiation between external and internal cuing: An fMRI study comparing tracing with drawing

机译:内部和内部提示之间的区别:一项将描图与绘图进行比较的功能磁共振成像研究

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摘要

Externally cued movement is thought to preferentially involve cerebellar and premotor circuits whereas internally generated movement recruits basal ganglia, pre-supplementary motor cortex (pre-SMA) and dorsolateral prefrontal cortex (DLPFC). Tracing and drawing are exemplar externally and internally guided actions and Parkinson's patients and cerebellar patients show deficits in tracking and drawing, respectively. In this study we aimed to examine this external/internal distinction in healthy subjects using functional imaging. Ten healthy subjects performed tracing and drawing of simple geometric shapes using pencil and paper while in a 3-T fMRI scanner. Results indicated that compared to tracing, drawing generated greater activation in the right cerebellar crus I, bilateral pre-SMA, right dorsal premotor cortex and right frontal eye field. Tracing did not recruit any additional activation compared to drawing except in striate and extrastriate visual areas. Therefore, drawing recruited areas more frequently associated with cognitively challenging tasks, attention and memory, but basal ganglia and cerebellar activity did not differentiate tracing from drawing in the hypothesised manner. As our paradigm was of a simple, repetitive and static design, these results suggest that the task familiarity and the temporal nature of visual feedback in tracking tasks, compared to tracing, may be important contributing factors towards the degree of cerebellar involvement. Future studies comparing dynamic with static external cues and visual feedback may clarify the role of the cerebellum and basal ganglia in the visual guidance of drawing actions.
机译:外界提示的运动被认为优先涉及小脑和运动前回路,而内部产生的运动则招募基底神经节,补充运动前皮层(SMA)和背外侧前额叶皮层(DLPFC)。跟踪和绘制是外部和内部指导的示例,帕金森氏病和小脑患者分别在跟踪和绘制方面表现出不足。在这项研究中,我们旨在使用功能成像检查健康受试者的这种外部/内部差异。十名健康受试者在3-T fMRI扫描仪中使用铅笔和纸进行了简单几何形状的描绘和绘制。结果表明,与追踪相比,绘画在右小脑I,双侧SMA前,右背运动前皮质和右额眼视野中产生了更大的激活。与绘图相比,描迹没有招募任何其他激活,除了在纹状体和纹状体视觉区域中。因此,更频繁地绘制招聘区域与具有挑战性的认知任务,注意力和记忆有关,但基底神经节和小脑活动并未以假设的方式区分描cing与绘制。由于我们的范例是简单,重复和静态的设计,因此这些结果表明,与跟踪相比,跟踪任务中任务的熟悉程度和视觉反馈的时间性可能是导致小脑受累程度的重要因素。将来将动态与静态外部提示以及视觉反馈进行比较的研究可能会阐明小脑和基底神经节在绘画动作的视觉指导中的作用。

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