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心理意象指令对空间定向加工的调制:一项关于表象动量的脑磁图研究

Modulation of spatial orientation processing by mental imagery instructions: a MEG study of representational momentum.

作者信息

Amorim M A, Lang W, Lindinger G, Mayer D, Deecke L, Berthoz A

机构信息

Collège de France, Paris, France.

出版信息

J Cogn Neurosci. 2000 Jul;12(4):569-82. doi: 10.1162/089892900562345.

Abstract

Under appropriate conditions, an observer's memory for the final position of an abruptly halted moving object is distorted in the direction of the represented motion. This phenomenon is called "representational momentum" (RM). We examined the effect of mental imagery instructions on the modulation of spatial orientation processing by testing for RM under conditions of picture versus body rotation perception and imagination. Behavioral data were gathered via classical reaction time and error measurements, whereas brain activity was recorded with the help of magnetoencephalography (MEG). Due to the so-called inverse problem and to signal complexity, results were described at the signal level rather than with the source location modeling. Brain magnetic field strength and spatial distribution, as well as latency of P200m evoked fields were used as neurocognitive markers. A task was devised where a subject examined a rotating sea horizon as seen from a virtual boat in order to extrapolate either the picture motion or the body motion relative to the picture while the latter disappeared temporarily until a test-view was displayed as a final orientation candidate. Results suggest that perceptual interpretation and extrapolation of visual motion in the roll plane capitalize on the fronto-parietal cortical networks involving working memory processes. Extrapolation of the rotational dynamics of sea horizon revealed a RM effect simulating the role of gravity in rotational equilibrium. Modulation of the P200m component reflected spatial orientation processing and a non-voluntary detection of an incongruity between displayed and expected final orientations given the implied motion. Neuromagnetic properties of anticipatory (Contingent Magnetic Variation) and evoked (P200m) brain magnetic fields suggest, respectively, differential allocation of attentional resources by mental imagery instructions (picture vs. body tilt), and a communality of neural structures (in the right centro-parietal region) for the control of both RM and mental rotation processes. Finally, the RM of the body motion is less prone to forward shifts than that of picture motion evidencing an internalization of the implied mass of the virtual body of the observer.

摘要

在适当条件下,观察者对突然停止的移动物体最终位置的记忆会朝着所表征运动的方向扭曲。这种现象被称为“表征动量”(RM)。我们通过在图片与身体旋转感知及想象条件下测试RM,研究了心理意象指令对空间定向处理调制的影响。行为数据通过经典反应时间和错误测量收集,而脑活动借助脑磁图(MEG)进行记录。由于所谓的逆问题和信号复杂性,结果是在信号层面描述的,而非通过源定位建模。脑磁场强度、空间分布以及P200m诱发场的潜伏期被用作神经认知标记。设计了一项任务,让受试者从虚拟船中观察旋转的海平面,以便在图片暂时消失直至显示测试视图作为最终方向候选时,推断相对于图片的图片运动或身体运动。结果表明,横滚平面中视觉运动的感知解释和推断利用了涉及工作记忆过程的额顶叶皮层网络。海平面旋转动力学的推断揭示了一种模拟重力在旋转平衡中作用的RM效应。P200m成分的调制反映了空间定向处理以及在给定隐含运动情况下对显示的和预期的最终方向之间不一致的非自愿检测。预期(偶然磁变化)和诱发(P200m)脑磁场的神经磁特性分别表明,心理意象指令(图片与身体倾斜)对注意力资源的不同分配,以及用于控制RM和心理旋转过程的神经结构(在右侧中央顶叶区域)的共性。最后,身体运动的RM比图片运动的RM更不容易出现向前偏移,这证明了观察者虚拟身体隐含质量的内化。

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