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Control of Movement: Plan-based generalization shapes local implicit adaptation to opposing visuomotor transformations

机译:运动控制:基于计划的概括塑造了局部隐式适应相反的视觉运动转换

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摘要

The human ability to use different tools demonstrates our capability of forming and maintaining multiple, context-specific motor memories. Experimentally, this has been investigated in dual adaptation, where participants adjust their reaching movements to opposing visuomotor transformations. Adaptation in these paradigms occurs by distinct processes, such as strategies for each transformation or the implicit acquisition of distinct visuomotor mappings. Although distinct, transformation-dependent aftereffects have been interpreted as support for the latter, they could reflect adaptation of a single visuomotor map, which is locally adjusted in different regions of the workspace. Indeed, recent studies suggest that explicit aiming strategies direct where in the workspace implicit adaptation occurs, thus potentially serving as a cue to enable dual adaptation. Disentangling these possibilities is critical to understanding how humans acquire and maintain motor memories for different skills and tools. We therefore investigated generalization of explicit and implicit adaptation to untrained movement directions after participants practiced two opposing cursor rotations, which were associated with the visual display being presented in the left or right half of the screen. Whereas participants learned to compensate for opposing rotations by explicit strategies specific to this visual workspace cue, aftereffects were not cue sensitive. Instead, aftereffects displayed bimodal generalization patterns that appeared to reflect locally limited learning of both transformations. By varying target arrangements and instructions, we show that these patterns are consistent with implicit adaptation that generalizes locally around movement plans associated with opposing visuomotor transformations. Our findings show that strategies can shape implicit adaptation in a complex manner.>NEW & NOTEWORTHY Visuomotor dual adaptation experiments have identified contextual cues that enable learning of separate visuomotor mappings, but the underlying representations of learning are unclear. We report that visual workspace separation as a contextual cue enables the compensation of opposing cursor rotations by a combination of explicit and implicit processes: Learners developed context-dependent explicit aiming strategies, whereas an implicit visuomotor map represented dual adaptation independent from arbitrary context cues by local adaptation around the explicit movement plan.
机译:人类使用不同工具的能力证明了我们形成并维护多个上下文相关的运动记忆的能力。在实验上,已经在双重适应中对此进行了研究,参与者可以将他们的伸展运动调整为对立的运动运动。在这些范例中的适应是通过不同的过程进行的,例如每种转换的策略或不同视觉运动映射的隐式获取。尽管已经将不同的,依赖于变换的后效应解释为对后者的支持,但它们可以反映单个视觉运动图的适应性,该视觉运动图在工作空间的不同区域中进行了局部调整。确实,最近的研究表明,明确的瞄准策略可指导工作空间中隐式适应的发生位置,从而有可能成为实现双重适应的线索。弄清这些可能性对于理解人类如何获取和维持针对不同技能和工具的运动记忆至关重要。因此,我们在参与者练习了两个相反的光标旋转(与与显示在屏幕左半部分或右半部分中的视觉显示相关联)之后,研究了对未经训练的运动方向的显式和隐式适应的一般化。参与者学会了通过特定于此视觉工作区提示的明确策略来补偿相反的旋转,而后效对提示并不敏感。相反,后效应显示了双峰泛化模式,似乎反映了对两种转换的局部有限学习。通过改变目标的安排和指示,我们表明这些模式与隐式适应相一致,后者在与相反的运动运动相关的运动计划周围局部化了。我们的发现表明,策略可以以复杂的方式塑造隐式适应。>新颖与有趣视觉运动双重适应实验已经确定了上下文线索,可以学习单独的视觉运动映射,但是学习的基本表示尚不清楚。我们报告说,视觉工作空间的分离作为上下文提示,可以通过显性和隐式过程的组合来补偿相对的光标旋转:学习者开发了上下文相关的显式瞄准策略,而隐式视觉运动图则代表了与局部上下文线索无关的双重适应围绕明确的运动计划进行适应。

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