Rozzi Stefano, Fogassi Leonardo
Department of Medicine and Surgery, Unit of Neuroscience, University of ParmaParma, Italy.
Front Neurosci. 2017 Sep 7;11:492. doi: 10.3389/fnins.2017.00492. eCollection 2017.
The lateral prefrontal cortex (LPF) plays a fundamental role in planning, organizing, and optimizing behavioral performance. Neuroanatomical and neurophysiological studies have suggested that in this cortical sector, information processing becomes more abstract when moving from caudal to rostral and that such processing involves parietal and premotor areas. We review studies that have shown that the LPF, in addition to its involvement in implementing rules and setting behavioral goals, activates during the execution of forelimb movements even in the absence of a learned relationship between an instruction and its associated motor output. Thus, we propose that the prefrontal cortex is involved in exploiting contextual information for planning and guiding behavioral responses, also in natural situations. Among contextual cues, those provided by others' actions are particularly relevant for social interactions. Functional studies of macaques have demonstrated that the LPF is activated by the observation of biological stimuli, in particular those related to goal-directed actions. We review these studies and discuss the idea that the prefrontal cortex codes high-order representations of observed actions rather than simple visual descriptions of them. Based on evidence that the same sector of the LPF contains both neurons coding own action goals and neurons coding others' goals, we propose that this sector is involved in the selection of own actions appropriate for reacting in a particular social context and for the creation of new action sequences in imitative learning.
外侧前额叶皮层(LPF)在行为表现的计划、组织和优化中起着重要作用。神经解剖学和神经生理学研究表明,在这个皮层区域,从尾侧向头侧移动时,信息处理会变得更加抽象,并且这种处理涉及顶叶和运动前区。我们回顾了一些研究,这些研究表明,LPF除了参与执行规则和设定行为目标外,即使在指令与其相关运动输出之间不存在学习关系的情况下,在前肢运动执行过程中也会被激活。因此,我们提出前额叶皮层参与利用情境信息来计划和指导行为反应,在自然情境中也是如此。在情境线索中,他人行为提供的线索对于社会互动尤为重要。对猕猴的功能研究表明,LPF会因观察生物刺激,特别是与目标导向行为相关的刺激而被激活。我们回顾这些研究,并讨论前额叶皮层编码观察到的行为的高阶表征而非简单视觉描述的观点。基于LPF的同一区域既包含编码自身行为目标的神经元又包含编码他人目标的神经元这一证据,我们提出该区域参与选择适合在特定社会情境中做出反应的自身行为,以及在模仿学习中创建新的行为序列。