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Towards a graph theoretical approach to study gender lateralization effect in mathematical thinking

机译:迈向图理论方法研究数学思维中的性别偏见效应

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Gender differences in mathematical thinking is a common concern of scientists from different research fields. Both parents and teachers report that males seem to perform better in complex mathematics compared to females. This study comes to shed light in the different organization of the underlying functional networks, in order to investigate the aforementioned observation, without supporting or rejecting this statement. In this sense, it is generally accepted that females use their both hemispheres to accomplish a certain task, while males use mostly the hemisphere which is properly suited. For the purposes of the current analysis, electroencephalographic recordings were collected from 11 males and 11 females, during a difficult mathematical task. Then a previously proposed model was used in order to pass from the sensor level to the cortical one, in order to examine the networks formed among the cortical dipoles. Mutual information was employed to form the graphs represeting the functional connectivity among the different dipoles, while the density, the global and the local efficiencies were further examined. The results suggest that females use their both hemisphere to solve the complex mathematical task while males use mostly their left hemisphere which is the responsible one for the mathematical thinking.
机译:数学思维上的性别差异是来自不同研究领域的科学家普遍关注的问题。父母和老师都报告说,相比于女性,男性在复杂数学上的表现似乎更好。这项研究揭示了底层功能网络的不同组织,目的是调查前述观察结果,而不支持或拒绝此声明。从这个意义上说,通常认为雌性使用两个半球来完成某项任务,而雄性则主要使用适当的半球。出于当前分析的目的,在一项艰巨的数学任务中,收集了11位男性和11位女性的脑电图记录。然后使用先前提出的模型,以便从传感器水平传递到皮层,以检查皮层偶极子之间形成的网络。相互信息被用来形成图,以重新设置不同偶极之间的功能连通性,同时进一步检查了密度,整体效率和局部效率。结果表明,女性使用他们的两个半球来解决复杂的数学任务,而男性则主要使用他们的左半球,这是数学思维的负责任者。

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