Biological Psychology and Neuropsychology, University of Hamburg, Hamburg, Germany.
Biopsychology & Cognitive Neuroscience, Bielefeld University, Bielefeld, Germany.
Nat Commun. 2023 Jul 27;14(1):4532. doi: 10.1038/s41467-023-39959-4.
Movements towards touch on the body require integrating tactile location and body posture information. Tactile processing and movement planning both rely on posterior parietal cortex (PPC) but their interplay is not understood. Here, human participants received tactile stimuli on their crossed and uncrossed feet, dissociating stimulus location relative to anatomy versus external space. Participants pointed to the touch or the equivalent location on the other foot, which dissociates sensory and motor locations. Multi-voxel pattern analysis of concurrently recorded fMRI signals revealed that tactile location was coded anatomically in anterior PPC but spatially in posterior PPC during sensory processing. After movement instructions were specified, PPC exclusively represented the movement goal in space, in regions associated with visuo-motor planning and with regional overlap for sensory, rule-related, and movement coding. Thus, PPC flexibly updates its spatial codes to accommodate rule-based transformation of sensory input to generate movement to environment and own body alike.
触摸身体的动作需要整合触觉位置和身体姿势信息。触觉处理和运动规划都依赖于后顶叶皮层(PPC),但它们的相互作用尚不清楚。在这里,人类参与者在交叉和未交叉的脚上接受触觉刺激,将刺激位置与解剖位置与外部空间区分开来。参与者指向触摸或另一只脚上的等效位置,从而将感觉位置和运动位置区分开来。同时记录的 fMRI 信号的多体素模式分析显示,在感觉处理过程中,触觉位置在前部 PPC 中按解剖结构编码,而在后部 PPC 中按空间编码。在指定运动指令后,PPC 仅在空间中表示运动目标,与视觉运动规划相关的区域以及与感觉、规则相关和运动编码的区域重叠。因此,PPC 可以灵活地更新其空间代码,以适应基于规则的对感觉输入的转换,从而产生对环境和自身身体的运动。