Max Planck Institute for Human Cognitive and Brain Sciences, Stephanstrasse 1a, 04103 Leipzig, Germany.
Hum Brain Mapp. 2012 Aug;33(8):1821-33. doi: 10.1002/hbm.21323. Epub 2011 Jul 7.
In visually guided grasping, possible hand shapes are computed from the geometrical features of the object, while prior knowledge about the object and the goal of the action influence both the computation and the selection of the hand shape. We investigated the system dynamics of the human brain for the pantomiming of grasping with two aspects accentuated. One is object recognition, with the use of objects for daily use. The subjects mimed grasping movements appropriate for an object presented in a photograph either by precision or power grip. The other is the selection of grip hand shape. We manipulated the selection demands for the grip hand shape by having the subjects use the same or different grip type in the second presentation of the identical object. Effective connectivity analysis revealed that the increased selection demands enhance the interaction between the anterior intraparietal sulcus (AIP) and posterior inferior temporal gyrus (pITG), and drive the converging causal influences from the AIP, pITG, and dorsolateral prefrontal cortex to the ventral premotor area (PMv). These results suggest that the dorsal and ventral visual areas interact in the pantomiming of grasping, while the PMv integrates the neural information of different regions to select the hand posture. The present study proposes system dynamics in visually guided movement toward meaningful objects, but further research is needed to examine if the same dynamics is found also in real grasping.
在视觉引导的抓取中,可能的手形是根据物体的几何特征计算出来的,而关于物体的先验知识和动作的目标会同时影响手形的计算和选择。我们通过两个方面来研究人类大脑在模拟抓取动作时的系统动力学。一方面是物体识别,使用日常生活中的物体。被试通过精准握或力握来模拟照片中呈现的物体的抓取动作。另一方面是抓握手形的选择。我们通过让被试在呈现相同物体的第二次演示中使用相同或不同的握持类型,来操纵握持手形的选择需求。有效连通性分析表明,增加的选择需求增强了前内顶叶回(AIP)和后下颞叶回(pITG)之间的相互作用,并促使 AIP、pITG 和背外侧前额叶皮质向腹侧前运动区(PMv)的汇聚因果影响。这些结果表明,在模拟抓取动作时,背侧和腹侧视觉区域相互作用,而 PMv 则整合来自不同区域的神经信息来选择手姿。本研究提出了在视觉引导的有意义物体运动中的系统动力学,但需要进一步研究来检验相同的动力学是否也存在于真实的抓取中。