Department of Physiology, Tohoku University School of Medicine, Sendai, 980-8575, Japan.
Department of Neurosurgery, Southern Tohoku General Hospital, Miyagi, 989-2483, Japan.
Sci Rep. 2024 Mar 28;14(1):6450. doi: 10.1038/s41598-024-56755-2.
Arithmetic operations are complex mental processes rooted in the abstract concept of numerosity. Despite the significance, the neural architecture responsible for these operations has remained largely uncharted. In this study, we explored the presence of specific neuronal activity in the dorsal premotor cortex of the monkey dedicated to numerical addition and subtraction. Our findings reveal that many of these neural activities undergo a transformation, shifting their coding from arithmetic to motor representations. These motor representations include information about which hand to use and the number of steps involved in the action. We consistently observed that cells related to the right-hand encoded addition, while those linked to the left-hand encoded subtraction, suggesting that arithmetic operations and motor commands are intertwining with each other. Furthermore, we used a multivariate decoding technique to predict the monkey's behaviour based on the activity of these arithmetic-related cells. The classifier trained to discern arithmetic operations, including addition and subtraction, not only predicted the arithmetic decisions but also the subsequent motor actions of the right and left-hand. These findings imply a cognitive extension of the motor cortex's function, where inherent neural systems are repurposed to facilitate arithmetic operations.
算术运算属于复杂的心理过程,其基础是数的抽象概念。尽管意义重大,但负责这些运算的神经结构在很大程度上仍未被探明。在这项研究中,我们探索了猴子的背侧运动前皮质中是否存在专门用于数值加和减的特定神经元活动。我们的研究结果表明,这些神经活动中的许多都发生了转变,其编码从算术运算转换为运动表象。这些运动表象包含了有关使用哪只手以及动作涉及的步数的信息。我们一致观察到,与右手相关的细胞编码加法,而与左手相关的细胞编码减法,这表明算术运算和运动指令是相互交织的。此外,我们使用多元解码技术根据这些与算术相关的细胞的活动来预测猴子的行为。训练有素的分类器可以辨别包括加法和减法在内的算术运算,不仅可以预测算术决策,还可以预测右手和左手的后续运动动作。这些发现意味着运动皮层功能的认知延伸,其中固有神经系统被重新用于促进算术运算。