首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >GAZE MODULATES NON-PROPOSITIONAL REASONING: FURTHER EVIDENCE FOR SPATIAL REPRESENTATION OF REASONING PREMISES
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GAZE MODULATES NON-PROPOSITIONAL REASONING: FURTHER EVIDENCE FOR SPATIAL REPRESENTATION OF REASONING PREMISES

机译:凝视会导致非正常的推理:推理前提的空间表示的进一步证据

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Human and animals are able to decide that A>C after having learnt that A>B and B>C. This basic property of logical thinking has been studied by transitive inference (TI) tasks. It has been hypothesized that subjects displace the premises of the inference on a mental line to solve the task. An evidence in favor of this interpretation is the observation of the symbolic distance effect, that is the improvement of the performance as the distance between items increases. This effect has been interpreted as support to the hypothesis that ability to perform TI tasks follows the same rules and is mediated by the same brain circuits involved in the performance of spatial tasks. We tested ten subjects performing a TI on an ordered list of Japanese characters while they were fixating either leftwards or rightwards, to evaluate whether the eye position modulated the performance in making TI as it does in spatial tasks. Our results show a significant linear decrease of the reaction time with the increase of the symbolic distance and a shift of this trend towards lower reaction times when subjects were fixating to the left. We interpret this eye position effect as a further evidence that spatial and reasoning tasks share the same underlying mechanisms and neural substrates. The eye position effect also points to a parietal cortex involvement in the neural circuit involved in transitive reasoning.
机译:人类和动物在得知A> B和B> C之后就能够确定A> C。逻辑思维的这一基本属性已通过传递推理(TI)任务进行了研究。据推测,主体将推理的前提放在心理线上以解决任务。支持这种解释的证据是对符号距离效应的观察,即随着项目之间距离的增加性能的提高。这种效果已被解释为以下假设的支持:执行TI任务的能力遵循相同的规则,并由参与执行空间任务的相同大脑回路介导。我们测试了十名在左或右固定状态下在有序日语字符列表上执行TI的对象,以评估眼睛位置是否像在空间任务中一样调节了制作TI的性能。我们的结果显示,随着对象距离的增加,反应时间线性显着降低,并且当受试者固定在左侧时,这种趋势朝着反应时间缩短的方向转移。我们将这种眼位效应解释为空间和推理任务共享相同的基本机制和神经底物的进一步证据。眼位效应还指出了与传递推理有关的神经回路中顶叶皮层的参与。

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