Facultad de Ciencias, Universidad Autónoma del Estado de México, Toluca, Estado de México, México.
Epilepsy Clinic, Instituto Nacional de Neurología y Neurocirugía, Mexico City, Mexico.
PeerJ. 2022 Aug 11;10:e13602. doi: 10.7717/peerj.13602. eCollection 2022.
The problem of whether we can execute free acts or not is central in philosophical thought, and it has been studied by numerous scholars throughout the centuries. Recently, neurosciences have entered this topic contributing new data and insights into the neuroanatomical basis of cognitive processes. With the advent of connectomics, a more refined landscape of brain connectivity can be analysed at an unprecedented level of detail. Here, we identify the connectivity network involved in the movement process from a connectomics point of view, from its motivation through its execution until the sense of agency develops. We constructed a "volitional network" using data derived from the Brainnetome Atlas database considering areas involved in volitional processes as known in the literature. We divided this process into eight processes and used Graph Theory to measure several structural properties of the network. Our results show that the volitional network is small-world and that it contains four communities. Nodes of the right hemisphere are contained in three of these communities whereas nodes of the left hemisphere only in two. Centrality measures indicate the nucleus accumbens is one of the most connected nodes in the network. Extensive connectivity is observed in all processes except in Decision (to move) and modulation of Agency, which might correlate with a mismatch mechanism for perception of Agency.
我们能否执行自由行为的问题是哲学思想的核心问题,几个世纪以来,众多学者一直在研究这个问题。最近,神经科学也加入了这个话题,为认知过程的神经解剖学基础提供了新的数据和见解。随着连接组学的出现,可以在前所未有的细节水平上分析更精细的大脑连接景观。在这里,我们从连接组学的角度确定了与运动过程相关的连接网络,从其动机到执行,直到产生代理感。我们使用从 Brainnetome Atlas 数据库中获得的数据构建了一个“意志网络”,考虑了文献中已知的与意志过程相关的区域。我们将这个过程分为八个过程,并使用图论来测量网络的几个结构属性。我们的结果表明,意志网络是小世界网络,它包含四个社区。右半球的节点包含在其中三个社区中,而左半球的节点只包含在其中两个社区中。中心性度量表明,伏隔核是网络中连接最紧密的节点之一。除了在(移动)决策和代理感调节过程中,在所有过程中都观察到广泛的连接,这可能与代理感感知的不匹配机制有关。