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对物理因果关系的感知和判断涉及不同的脑结构。

Perception and judgement of physical causality involve different brain structures.

作者信息

Fonlupt Pierre

机构信息

Inserm-Unité de recherche U280. 151, Cours Albert Thomas, 69424 Lyon Cedex 03, France.

出版信息

Brain Res Cogn Brain Res. 2003 Jul;17(2):248-54. doi: 10.1016/s0926-6410(03)00112-5.

Abstract

One basic type of 'mechanical' causality is that which occurs between physical objects. Subjects were presented with mechanically causal events (ball collides with and causes movement of another ball) or two non-causal events (a ball either passes underneath another ball, or rolls across the screen and changes colour). We investigated which brain regions exhibit increased activity during the judgement of causality ('judged causality') as compared with judgement of movement direction ('perceived causality'). We show an increase of medial frontal cortex activity when subjects were explicitly instructed to search for causality. Moreover, this increase was specifically associated with the search for causality and not with the perception of causality because the signal increase occurs whatever the nature of the stimulus (causal or non causal). Our study provides evidence for brain regions involved in a conscious level of inference about the presence of causality.

摘要

一种基本的“机械”因果关系类型是发生在物理对象之间的那种。向受试者呈现机械因果事件(一个球与另一个球碰撞并使其移动)或两个非因果事件(一个球从另一个球下方经过,或者滚过屏幕并改变颜色)。我们研究了与运动方向判断(“感知因果关系”)相比,在因果关系判断(“判断因果关系”)过程中哪些脑区表现出活动增加。我们发现,当明确指示受试者寻找因果关系时,内侧前额叶皮层的活动会增加。此外,这种增加与因果关系的寻找特别相关,而不是与因果关系的感知相关,因为无论刺激的性质(因果或非因果)如何,信号都会增加。我们的研究为参与对因果关系存在进行有意识推理水平的脑区提供了证据。

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