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通往动作理解的左右前额叶路径

"Left and right prefrontal routes to action comprehension".

作者信息

Amoruso Lucia, Finisguerra Alessandra, Urgesi Cosimo

机构信息

Laboratory of Cognitive Neuroscience, Department of Languages and Literatures, Communication, Education and Society, University of Udine, Udine, I-33100, Italy; Basque Center on Cognition, Brain and Language, San Sebastian, 20009, Spain; IKERBASQUE, Basque Foundation for Science, Bilbao, 48009, Spain.

Scientific Institute, IRCCS E. Medea, Pasian di Prato, Udine, I-33037, Italy.

出版信息

Cortex. 2023 Jun;163:1-13. doi: 10.1016/j.cortex.2023.01.015. Epub 2023 Mar 20.

Abstract

Successful action comprehension requires the integration of motor information and semantic cues about objects in context. Previous evidence suggests that while motor features are dorsally encoded in the fronto-parietal action observation network (AON); semantic features are ventrally processed in temporal structures. Importantly, these dorsal and ventral routes seem to be preferentially tuned to low (LSF) and high (HSF) spatial frequencies, respectively. Recently, we proposed a model of action comprehension where we hypothesized an additional route to action understanding whereby coarse LSF information about objects in context is projected to the dorsal AON via the prefrontal cortex (PFC), providing a prediction signal of the most likely intention afforded by them. Yet, this model awaits for experimental testing. To this end, we used a perturb-and-measure continuous theta burst stimulation (cTBS) approach, selectively disrupting neural activity in the left and right PFC and then evaluating the participant's ability to recognize filtered action stimuli containing only HSF or LSF. We find that stimulation over PFC triggered different spatial-frequency modulations depending on lateralization: left-cTBS and right-cTBS led to poorer performance on HSF and LSF action stimuli, respectively. Our findings suggest that left and right PFC exploit distinct spatial frequencies to support action comprehension, providing evidence for multiple routes to social perception in humans.

摘要

成功的动作理解需要整合运动信息和情境中物体的语义线索。先前的证据表明,虽然运动特征在额顶叶动作观察网络(AON)中进行背侧编码;语义特征则在颞叶结构中进行腹侧处理。重要的是,这些背侧和腹侧路径似乎分别优先调谐到低(LSF)和高(HSF)空间频率。最近,我们提出了一个动作理解模型,我们假设了一条通向动作理解的额外路径,即情境中物体的粗略低空间频率信息通过前额叶皮层(PFC)投射到背侧AON,提供由它们产生的最可能意图的预测信号。然而,这个模型有待实验验证。为此,我们使用了一种扰动测量连续theta爆发刺激(cTBS)方法,选择性地干扰左右前额叶皮层的神经活动,然后评估参与者识别仅包含高空间频率或低空间频率的滤波动作刺激的能力。我们发现,前额叶皮层的刺激根据其侧化引发了不同的空间频率调制:左侧cTBS和右侧cTBS分别导致在高空间频率和低空间频率动作刺激上的表现更差。我们的研究结果表明,左右前额叶皮层利用不同的空间频率来支持动作理解,为人类社会感知的多条路径提供了证据。

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