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Generalization patterns for reach adaptation and proprioceptive recalibration differ after visuomotor learning

机译:视觉运动学习后范围适应和本体感受重新校准的一般模式有所不同

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摘要

Visuomotor learning results in changes in both motor and sensory systems (Cressman EK, Henriques DY. J Neurophysiol 102: 3505–3518, 2009), such that reaches are adapted and sense of felt hand position recalibrated after reaching with altered visual feedback of the hand. Moreover, visuomotor learning has been shown to generalize such that reach adaptation achieved at a trained target location can influence reaches to novel target directions (Krakauer JW, Pine ZM, Ghilardi MF, Ghez C. J Neurosci 20: 8916–8924, 2000). We looked to determine whether proprioceptive recalibration also generalizes to novel locations. Moreover, we looked to establish the relationship between reach adaptation and changes in sense of felt hand position by determining whether proprioceptive recalibration generalizes to novel targets in a similar manner as reach adaptation. On training trials, subjects reached to a single target with aligned or misaligned cursor-hand feedback, in which the cursor was either rotated or scaled in extent relative to hand movement. After reach training, subjects reached to the training target and novel targets (including targets from a second start position) without visual feedback to assess generalization of reach adaptation. Subjects then performed a proprioceptive estimation task, in which they indicated the position of their hand relative to visual reference markers placed at similar locations as the trained and novel reach targets. Results indicated that shifts in hand position generalized across novel locations, independent of reach adaptation. Thus these distinct sensory and motor generalization patterns suggest that reach adaptation and proprioceptive recalibration arise from independent error signals and that changes in one system cannot guide adjustments in the other.
机译:视觉运动学习导致运动系统和感觉系统的变化(Cressman EK,Henriques DY。J Neurophysiol 102:3505-3518,2009),从而达到适应范围,并在达到手的视觉反馈改变后重新调整手的感觉。此外,视觉运动学习已被普遍化,以使在经过训练的目标位置上达到的触及适应可以影响新目标方向的触及(Krakauer JW,Pine ZM,Ghilardi MF,Ghez C. J Neurosci 20:8916-1892、2000)。我们试图确定本体感受性重新校准是否也能推广到新颖的位置。此外,我们试图通过确定本体感受性重新校准是否以与触及适应类似的方式推广到新型目标,来建立触及适应与感觉手位置感变化之间的关系。在训练试验中,受试者通过对准或未对准的光标-手反馈到达单个目标,其中光标相对于手的运动在一定程度上旋转或缩放。达到范围训练后,受试者无需视觉反馈即可达到训练目标和新颖目标(包括从第二个起始位置开始的目标)以评估范围适应的一般性。然后受试者执行本体感受估计任务,其中他们指示手相对于视觉参考标记的手的位置,该视觉参考标记位于与训练有素和新颖的到达目标相似的位置。结果表明,手部位置的变化普遍出现在新颖的位置,而与覆盖范围的适应无关。因此,这些不同的感觉和运动泛化模式表明,范围自适应和本体感受性重新校准是由独立的误差信号引起的,并且一个系统中的更改无法指导另一个系统中的调整。

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