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An fMRI study of brain activation in a visual adaptation task: activation limited to sensory guidance

机译:功能磁共振成像研究视觉适应任务中的大脑激活:激活仅限于感觉指导

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Previous neuroimaging studies yielded different patterns of brain areas activated during sensorimotor adaptation, when sensory conflicts are introduced, e.g. by manipulating visual information. We propose that possible reasons might be the lack to control for adaptation or the change in motor performance. In consequence, it was not possible to distinguish between adaptation-related and error-related brain activations. We have developed a sensorimotor adaptation task which controls for these errors using two types of visual distortion and thus is suited to disambiguate sensorimotor adaptation from the related activation patterns. Twenty healthy subjects were scanned by fMRI during a tracking task, while adapting to a visual distortion, which depended either on hand position or on hand velocity. In either case, adaptation was interleaved with a control condition, designed such that the time-course of tracking errors approximated that under visual distortion. We found that adaptation-related neural activation was limited to the left supramarginal and angular gyrus under the position-dependent distortion, but extended bilaterally in the supramarginal gyrus, as well as in the left middle and right superior frontal gyrus under the velocity-dependent distortion. Our findings confirm that equating the errors under both conditions will yield an anatomically more restricted activation pattern compared with other studies. The additional recruitment in right parietal and bilateral frontal areas under the velocity-dependent distortion might reflect a higher computational demand, or the involvement of different adaptive mechanisms.
机译:以前的神经影像学研究产生了在感觉运动适应过程中激活的各种不同的大脑区域模式,例如在引入感觉冲突时。通过操纵视觉信息。我们建议可能的原因可能是缺乏对适应性的控制或电机性能的变化。结果,不可能区分与适应相关和与错误相关的大脑激活。我们已经开发了一种感觉运动适应性任务,该任务使用两种类型的视觉失真来控制这些错误,因此适合将感觉运动适应性与相关的激活模式区分开。在跟踪任务期间,通过功能磁共振成像对20名健康受试者进行了扫描,同时适应了视手的位置或手速度所引起的视觉畸变。在任何一种情况下,自适应都与控制条件交织在一起,控制条件的设计使得跟踪误差的时程近似于视觉失真时的情况。我们发现,与适应有关的神经激活在位置依赖的畸变下仅限于左上颌和角状回,而在速度依赖型畸变下在上颌上回以及左中右上额回均向两侧扩展。 。我们的发现证实,与其他研究相比,在两种情况下均等化误差将产生解剖学上更受限制的激活模式。在与速度相关的畸变下,右顶叶和双侧额叶区域的额外募集可能反映出较高的计算需求,或涉及不同的适应机制。

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