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首页> 外文期刊>Neuropsychologia >Visual processing of moving and static self body-parts.
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Visual processing of moving and static self body-parts.

机译:视觉处理运动的和静态的自我身体部位。

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Humans' ability to recognize static images of self body-parts can be lost following a lesion of the right hemisphere [Frassinetti, F., Maini, M., Romualdi, S., Galante, E., & Avanzi, S. (2008). Is it mine? Hemispheric asymmetries in corporeal self-recognition. Journal of Cognitive Neuroscience, 20, 1507-1516]. Here we investigated whether the visual information provided by the movement of self body-parts may be separately processed by right brain-damaged (RBD) patients and constitute a valuable cue to reduce their deficit in self body-parts processing. To pursue these aims, neurological healthy subjects and RBD patients were submitted to a matching-task of a pair of subsequent visual stimuli, in two conditions. In the dynamic condition, participants were shown movies of moving body-parts (hand, foot, arm and leg); in the static condition, participants were shown still images of the same body-parts. In each condition, on half of the trials at least one stimulus in the pair was from the participant's own body ('Self' condition), whereas on the remaining half of the trials both stimuli were from another person ('Other' condition). Results showed that in healthy participants the self-advantage was present when processing both static and dynamic body-parts, but it was more important in the latter condition. In RBD patients, however, the self-advantage was absent in the static, but present in the dynamic body-parts condition. These findings suggest that visual information from self body-parts in motion may be processed independently in patients with impaired static self-processing, thus pointing to a modular organization of the mechanisms responsible for the self/other distinction.
机译:右半球病变后,人类识别自身身体静态图像的能力可能会丧失[Frassinetti,F.,Maini,M.,Romualdi,S.,Galante,E.,&Avanzi,S.(2008 )。是我的吗?体自我识别中的半球不对称。认知神经科学杂志,20,1507-1516]。在这里,我们调查了由右肢受损(RBD)的患者是否可以单独处理由自身部位运动提供的视觉信息,并构成了减少他们在自我部位加工中的缺陷的有价值的提示。为了实现这些目标,在两种情况下,将神经系统健康的受试者和RBD患者接受了一对随后视觉刺激的匹配任务。在动态条件下,向参与者显示了运动的身体部位(手,脚,手臂和腿)的电影;在静止状态下,向参与者显示了相同身体部位的静止图像。在每种情况下,在一半的试验中,该对中至少有一个刺激来自参与者自身的身体(“自我”条件),而在其余一半的试验中,两种刺激均来自另一个人(“其他”条件)。结果显示,健康参与者在处理静态和动态身体部位时都存在自我优势,但在后者情况下更重要。然而,在RBD患者中,静态不存在自我优势,但身体动态部位存在自我优势。这些发现表明,静态自我加工受损的患者可能会独立处理运动中自身身体部位的视觉信息,从而指出了负责自我/其他差异的机制的模块化组织。

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