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The Contribution of Different Cortical Regions to the Control of Spatially Decoupled Eye-Hand Coordination

机译:不同皮质区域对空间解耦眼手协调的控制作用

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Our brain's ability to flexibly control the communication between the eyes and the hand allows for our successful interaction with the objects located within our environment. This flexibility has been observed in the pattern of neural responses within key regions of the frontoparietal reach network. More specifically, our group has shown how single-unit and oscillatory activity within the dorsal premotor cortex (PMd) and the superior parietal lobule (SPL) change contingent on the level of visuomotor compatibility between the eyes and hand. Reaches that involve a coupling between the eyes and hand toward a common spatial target display a pattern of neural responses that differ from reaches that require eye-hand decoupling. Although previous work examined the altered spiking and oscillatory activity that occurs during different types of eye-hand compatibilities, they did not address how each of these measures of neurological activity interacts with one another. Thus, in an effort to fully characterize the relationship between oscillatory and single-unit activity during different types of eye-hand coordination, we measured the spike-field coherence (SFC) within regions of macaque SPL and PMd. We observed stronger SFC within PMdr and superficial regions of SPL (areas 5/PEc) during decoupled reaches, whereas PMdc and regions within SPL surrounding medial intrapareital sulcus had stronger SFC during coupled reaches. These results were supported by meta-analysis on human fMRI data. Our results support the proposal of altered cortical control during complex eye-hand coordination and highlight the necessity to account for the different eye-hand compatibilities in motor control research.
机译:我们大脑灵活地控制眼睛和手之间的通讯的能力,使我们能够与周围环境中的物体成功进行交互。这种灵活性已在额前额触及网络关键区域内的神经反应模式中观察到。更具体地说,我们的小组已经证明了运动前背皮质(PMd)和顶叶小叶(SPL)内的单个单元和振荡活动如何根据眼睛和手之间的视觉运动相容性水平而变化。涉及眼睛与手之间朝向公共空间目标的耦合的伸手可及区域,显示出与需要眼手去耦的触觉不同的神经反应模式。尽管先前的工作研究了在不同类型的眼手相容性过程中发生的突跳和振荡活动的变化,但他们并未解决这些神经活动度量之间的相互作用。因此,为了全面表征不同类型的眼手协调过程中振荡活动和单个单元活动之间的关系,我们测量了猕猴SPL和PMd区域内的尖峰场相干性(SFC)。我们观察到,在解耦期间,PMdr和SPL浅表区域(5 / PEc区域)内的SFC较强,而在区域内腹腔沟周围的PMdc和SPL内区域在耦合期间具有更强的SFC。这些结果得到了人类功能磁共振成像数据的荟萃分析的支持。我们的结果支持在复杂的手眼协调过程中改变皮质控制的建议,并强调了在运动控制研究中必须考虑到不同的手眼兼容性的必要性。

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