National Scientific and Technical Research Council (CONICET), Buenos Aires, Argentina; Instituto de Neurociencia Cognitiva y Traslacional (INCyT), Buenos Aires, Argentina.
National Scientific and Technical Research Council (CONICET), Buenos Aires, Argentina; Cognitive Neuroscience Center, Universidad de San Andrés, Buenos Aires, Argentina.
Brain Cogn. 2022 Feb;156:105831. doi: 10.1016/j.bandc.2021.105831. Epub 2021 Dec 16.
Patients with atrophy in motor brain regions exhibit selective deficits in processing action-related meanings, suggesting a link between movement conceptualization and the amount of regional tissue. Here we examine such a relation in a unique opposite model: a rare patient with a double cortex (due to subcortical band heterotopia) in primary/supplementary motor regions, and no double cortex in multimodal semantic regions. We measured behavioral performance in action- and object-concept processing as well and resting-state functional connectivity. Both dimensions involved comparisons with healthy controls. Results revealed preserved accuracy in action and object categories for the patient. However, unlike controls, the patient exhibited faster performance for action than object concepts, a difference that was uninfluenced by general cognitive abilities. Moreover, this pattern was accompanied by heightened functional connectivity between the bilateral primary motor cortices. This suggests that a functionally active double motor cortex may entail action-processing advantages. Our findings offer new constraints for models of action semantics and motor-region function at large.
运动脑区萎缩的患者在处理与动作相关的意义时表现出选择性缺陷,这表明运动概念化与区域组织量之间存在联系。在这里,我们在一个独特的相反模型中研究了这种关系:一个罕见的患者,其初级/辅助运动区域存在皮层下带异位(由于皮层下带异位),而多模态语义区域没有皮层下带异位。我们还测量了动作和对象概念处理以及静息状态功能连接方面的行为表现。这两个维度都涉及与健康对照组的比较。结果显示,患者在动作和对象类别上的准确性保持不变。然而,与对照组不同的是,患者在动作概念上的表现比物体概念快,这种差异不受一般认知能力的影响。此外,这种模式伴随着双侧初级运动皮质之间功能连接的增强。这表明功能活跃的双运动皮质可能带来动作处理的优势。我们的研究结果为动作语义学和运动区域功能的模型提供了新的限制。