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Vestibular stimulation interferes with the dynamics of an internal representation of gravity

机译:前庭刺激干扰了重力内部表示的动态

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The remembered vanishing location of a moving target has been found to be displaced downward in the direction of gravity (representational gravity) and more so with increasing retention intervals, suggesting that the visual spatial updating recruits an internal model of gravity. Despite being consistently linked with gravity, few inquiries have been made about the role of vestibular information in these trends. Previous experiments with static tilting of observers' bodies suggest that under conflicting cues between the idiotropic vector and vestibular signals, the dynamic drift in memory is reduced to a constant displacement along the body's main axis. The present experiment aims to replicate and extend these outcomes while keeping the observers' bodies unchanged in relation to physical gravity by varying the gravito-inertial acceleration using a short-radius centrifuge. Observers were shown, while accelerated to varying degrees, targets moving along several directions and were required to indicate the perceived vanishing location after a variable interval. Increases of the gravito-inertial force (up to 1.4G), orthogonal to the idiotropic vector, did not affect the direction of representational gravity, but significantly disrupted its time course. The role and functioning of an internal model of gravity for spatial perception and orientation are discussed in light of the results.
机译:研究发现,运动目标的记忆消失位置在重力方向(代表性重力)上向下移动,并且随着保留间隔的增加,这种移动更为明显,这表明视觉空间更新引入了重力的内部模型。尽管一直与重力有关,但关于前庭信息在这些趋势中的作用,很少有人进行过调查。之前关于观察者身体静态倾斜的实验表明,在独特性向量和前庭信号之间的冲突提示下,记忆中的动态漂移会减少到沿着身体主轴的恒定位移。本实验旨在复制和扩展这些结果,同时通过使用短半径离心机改变重力惯性加速度,保持观察者的身体与物理重力的关系不变。观察者被显示,当加速到不同程度时,目标会沿着几个方向移动,并且需要在可变间隔后指示感知到的消失位置。重力惯性力(高达1.4G)的增加,与独特向量正交,不会影响代表性重力的方向,但会显著扰乱其时间进程。根据研究结果,讨论了重力内部模型在空间感知和定向中的作用和功能。

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