Department of Psychology, University of Milano-Bicocca, Italy.
Neuropsychologia. 2013 Nov;51(13):2690-701. doi: 10.1016/j.neuropsychologia.2013.09.023. Epub 2013 Sep 19.
The perception of tools vs. other objects has been shown to activate the left premotor and somatosensory cortex, which represents object affordance associated with tool manipulability (Proverbio, Adorni, & D'Aniello, 2011). The question of whether hemispheric asymmetry depends on right hand use or is linked to a hemispheric functional specialization for fine-grained precision movement is unclear. Thus, in this paper, ERPs were recorded from 128 sites in response to the visual presentation of bidimensional (2D) pictures depicting unimanual (e.g., a hammer) and bimanual (e.g., a handlebar) tools (Study 1). Central N2 and prefrontal N400 components were much larger for bimanual than unimanual tools (over the left hemisphere for N400). SwLORETAs performed for both components showed at first the activation of the left parietal cortex (BA39) and then of the right homologous (BA40) one, for both grips but stronger for the bimanual coordination. At all times and for both grips, the left premotor cortex (BA6) was involved in coding action affordance, while only unimanual tools activated the left postcentral gyrus (BA3). In Study 2, unimanual tools were presented with an orientation congruent (standard) or incongruent to their interaction with the right hand (rotated), to manipulate affordance's quality. Standard objects elicited much larger ERP responses (namely: N1, N2, N400) than rotated tools (over the left hemisphere for N400). At the earliest stage (190-270 ms) the significant intracranial sources were of visual nature (mainly the contralateral precuneus). Regions representing motor information were not involved. Rotated tools induced a smaller activation in the STS and parahippocampal regions (possibly coding affordable biological motion and the spatial aspects of hand/object interaction), whereas rotated tools activated to a greater extent the dorsolateral prefrontal cortex (DLPF, BA9). In the later time window standard objects activated the left BA6 and the right BA40 more than rotated objects. Overall, these data suggest that viewing tools automatically activates mental representations associated with their manipulation. The left premotor cortex was found to be involved with any kind of object and grip, as early as 200 ms post-stimulus, thus supporting the hypothesis of a LH asymmetry in the neural representation of grasping, within this region. The right supramarginal gyrus was also found to be crucially involved later in time.
工具与其他物体的感知已被证明会激活左侧运动前皮质和体感皮质,这代表了与工具可操作性相关的物体可供性(Proverbio、Adorni 和 D'Aniello,2011)。目前尚不清楚大脑半球的不对称性是否取决于右手的使用,还是与半球对精细精度运动的功能专业化有关。因此,在本文中,我们使用记录的事件相关电位(ERP)从 128 个部位对二维(2D)图片的视觉呈现做出反应,这些图片描绘了单手(例如,锤子)和双手(例如,把手)工具(研究 1)。双手工具的中央 N2 和前额 N400 成分比单手工具大得多(对于 N400,左侧半球较大)。对于这两个成分,SwLORETAs 首先激活了左侧顶叶皮质(BA39),然后激活了右侧同源皮质(BA40),对于两种抓握方式,但双手协调的激活更强。在任何时候和两种抓握方式下,左侧运动前皮质(BA6)都参与了动作可供性的编码,而只有单手工具激活了左侧后中央回(BA3)。在研究 2 中,单手工具的方向与右手的相互作用一致(标准)或不一致(旋转),以操纵可供性的质量。标准物体引起的 ERP 反应(即 N1、N2、N400)比旋转工具大得多(对于 N400,左侧半球较大)。在最早的阶段(190-270 ms),显著的颅内源是视觉性质的(主要是对侧楔前叶)。代表运动信息的区域不参与其中。旋转工具引起 STS 和海马旁回区域的激活较小(可能编码可负担的生物运动和手/物体相互作用的空间方面),而旋转工具更强烈地激活了背外侧前额叶皮质(DLPF,BA9)。在稍后的时间窗口中,标准物体比旋转物体更能激活左侧 BA6 和右侧 BA40。总体而言,这些数据表明,观看工具会自动激活与其操作相关的心理表征。左侧运动前皮质被发现与任何类型的物体和抓握都有关,早在刺激后 200 毫秒就有关,从而支持了左侧大脑半球在该区域抓取神经表示中存在不对称性的假设。后来还发现右侧缘上回也至关重要。