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理解针对现实世界目标的人类原始行为:外侧前额叶皮层的作用。

Understanding human original actions directed at real-world goals: the role of the lateral prefrontal cortex.

作者信息

Sitnikova Tatiana, Rosen Bruce R, Lord Louis-David, West W Caroline

机构信息

Martinos Center for Biomedical Imaging, Massachusetts General Hospital, 149 13th Street, Suite 2301, Charlestown, MA 02129, USA; Harvard Medical School, 25 Shattuck Street, Boston, MA, USA.

Martinos Center for Biomedical Imaging, Massachusetts General Hospital, 149 13th Street, Suite 2301, Charlestown, MA 02129, USA.

出版信息

Neuroimage. 2014 Dec;103:91-105. doi: 10.1016/j.neuroimage.2014.09.012. Epub 2014 Sep 16.

Abstract

Adaptive, original actions, which can succeed in multiple contextual situations, require understanding of what is relevant to a goal. Recognizing what is relevant may also help in predicting kinematics of observed, original actions. During action observation, comparisons between sensory input and expected action kinematics have been argued critical to accurate goal inference. Experimental studies with laboratory tasks, both in humans and nonhuman primates, demonstrated that the lateral prefrontal cortex (LPFC) can learn, hierarchically organize, and use goal-relevant information. To determine whether this LPFC capacity is generalizable to real-world cognition, we recorded functional magnetic resonance imaging (fMRI) data in the human brain during comprehension of original and usual object-directed actions embedded in video-depictions of real-life behaviors. We hypothesized that LPFC will contribute to forming goal-relevant representations necessary for kinematic predictions of original actions. Additionally, resting-state fMRI was employed to examine functional connectivity between the brain regions delineated in the video fMRI experiment. According to behavioral data, original videos could be understood by identifying elements relevant to real-life goals at different levels of abstraction. Patterns of enhanced activity in four regions in the left LPFC, evoked by original, relative to usual, video scenes, were consistent with previous neuroimaging findings on representing abstract and concrete stimuli dimensions relevant to laboratory goals. In the anterior left LPFC, the activity increased selectively when representations of broad classes of objects and actions, which could achieve the perceived overall behavioral goal, were likely to bias kinematic predictions of original actions. In contrast, in the more posterior regions, the activity increased even when concrete properties of the target object were more likely to bias the kinematic prediction. Functional connectivity was observed between contiguous regions along the rostro-caudal LPFC axis, but not between the regions that were not immediately adjacent. These findings generalize the representational hierarchy account of LPFC function to diverse core principles that can govern both production and comprehension of flexible real-life behavior.

摘要

适应性的、原始的行为,能够在多种情境中取得成功,这需要理解与目标相关的内容。识别相关内容也可能有助于预测观察到的原始行为的运动学。在动作观察过程中,感觉输入与预期动作运动学之间的比较被认为对准确的目标推断至关重要。在人类和非人类灵长类动物身上进行的实验室任务实验研究表明,外侧前额叶皮层(LPFC)能够学习、分层组织并使用与目标相关的信息。为了确定这种LPFC能力是否能推广到现实世界的认知中,我们在人类大脑中记录了功能磁共振成像(fMRI)数据,这些数据是在理解嵌入在现实生活行为视频描述中的原始和常见的目标导向动作时获取的。我们假设LPFC将有助于形成对原始动作运动学预测所必需的与目标相关的表征。此外,静息态fMRI被用于检查视频fMRI实验中描绘的大脑区域之间的功能连接。根据行为数据,通过识别不同抽象层次上与现实生活目标相关的元素,可以理解原始视频。相对于常见视频场景,原始视频场景诱发的左侧LPFC四个区域的活动增强模式,与先前关于表征与实验室目标相关的抽象和具体刺激维度的神经成像研究结果一致。在左侧LPFC前部,当能够实现感知到的整体行为目标的宽泛类别的物体和动作的表征可能会影响原始动作的运动学预测时,活动选择性增加。相反,在更靠后的区域,即使目标物体的具体属性更有可能影响运动学预测,活动也会增加。沿着LPFC的前后轴在相邻区域之间观察到了功能连接,但在不直接相邻的区域之间未观察到。这些发现将LPFC功能的表征层次理论推广到了可以支配灵活的现实生活行为产生和理解的多种核心原则。

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