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首页> 外文期刊>Behavioural Brain Research: An International Journal >Novel claustrum activation observed during a visuomotor adaptation task using a viewing window paradigm.
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Novel claustrum activation observed during a visuomotor adaptation task using a viewing window paradigm.

机译:在使用观察窗范例的视觉运动适应任务中观察到的新型锁骨激活。

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Previous literature has reported a wide range of anatomical correlates when participants are required to perform a visuomotor adaptation task. However, traditional adaptation tasks suffer a number of inherent limitations that may, in part, give rise to this variability. For instance, the sparse visual environment does not map well onto conditions in which a visuomotor transformation would normally be required in everyday life. To further clarify these neural underpinnings, functional magnetic resonance imaging (fMRI) was performed on 17 (6M, age range 20-45 years old; mean age=26) naive participants performing a viewing window task in which a visuomotor transformation was created by varying the relationship between the participant's movement and the resultant movement of the viewing window. The viewing window task more naturally replicates scenarios in which haptic and visual information would be combined to achieve a higher-level goal. Even though activity related to visuomotor adaptation was found within previously reported regions of the parietal lobes, frontal lobes, and occipital lobes, novel activation patterns were observed within the claustrum - a region well-established as multi-modal convergence zone. These results confirm the diversity in the number and location of neurological systems recruited to perform a required visuomotor adaptation, and provide the first evidence of participation of the claustrum to overcome a visuomotor transformation.
机译:以前的文献报道了当要求参与者执行视觉运动适应任务时,解剖学相关的范围很广。然而,传统的适应任务遭受许多固有的限制,这些限制可能部分地导致这种可变性。例如,稀疏的视觉环境无法很好地映射到在日常生活中通常需要视觉运动转换的条件。为了进一步阐明这些神经基础,对17位(6M,年龄范围20-45岁;平均年龄= 26)天真的参与者进行了功能性磁共振成像(fMRI),这些参与者执行了观察窗任务,其中通过改变视觉运动参与者的运动与观察窗的最终运动之间的关系。查看窗口任务更自然地复制了将触觉和视觉信息相结合以实现更高级别目标的方案。即使在先前报道的顶叶,额叶和枕叶中发现了与运动适应相关的活动,但在锁骨内仍观察到了新的激活模式,该区域已被确立为多峰会合区域。这些结果证实了募集来执行所需的视运动适应的神经系统的数量和位置的多样性,并提供了锁骨参与克服视运动转化的第一个证据。

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