Department of Kinesiology, Biomedical Sciences Group, Movement Control and Neuroplasticity Research Center, KU Leuven, 3001 Leuven, Belgium.
BrainCTR, Lilid bvba, 3290 Diest, Belgium.
Cereb Cortex. 2018 Feb 1;28(2):459-473. doi: 10.1093/cercor/bhw382.
Skill acquisition capabilities vary substantially from one individual to another. Volumetric brain studies have demonstrated that global volume of several subcortical structures predicts variations in learning outcome in young adults (YA) and older adults (OA). In this study, for the first time, we utilized shape analysis, which offers a more sensitive detection of subregional brain anatomical deformations, to investigate whether subregional anatomy of subcortical structures is associated with training-induced performance improvement on a bimanual task in YA and OA, and whether this association is age-dependent. Compared with YA, OA showed poorer performance, greater performance improvement, and smaller global volume and compressed subregional shape in subcortical structures. In OA, global volume of the right nucleus accumbens and subregional shape of the right thalamus, caudate, putamen and nucleus accumbens were positively correlated with acquisition of difficult (non-preferred) but not easy (preferred) task conditions. In YA, global volume and subregional shape of the right hippocampus were negatively correlated with performance improvement in both the easy and difficult conditions. We argue that pre-existing neuroanatomical measures of subcortical structures involved in motor learning differentially predict skill acquisition potential in YA and OA.
技能获取能力在个体之间存在很大差异。体积脑研究表明,几个皮质下结构的总体积可以预测年轻人(YA)和老年人(OA)学习成果的变化。在这项研究中,我们首次利用形状分析,该方法提供了对皮质下结构亚区域大脑解剖结构变形的更敏感检测,来研究皮质下结构的亚区域解剖结构是否与 YA 和 OA 中双手任务的训练诱导的表现改善相关,以及这种关联是否依赖于年龄。与 YA 相比,OA 表现出较差的表现、更大的表现改善、较小的皮质下结构的整体体积和压缩的亚区域形状。在 OA 中,右侧伏隔核的整体体积和右侧丘脑、尾状核、壳核和伏隔核的亚区域形状与困难(非首选)但非简单(首选)任务条件的习得呈正相关。在 YA 中,右侧海马体的整体体积和亚区域形状与简单和困难条件下的表现改善均呈负相关。我们认为,参与运动学习的皮质下结构的预先存在的神经解剖学测量指标可以预测 YA 和 OA 的技能获取潜力。