Dipartimento di Psicologia 39, Università degli Studi di Roma 'La Sapienza', Roma, Italy; Fondazione Santa Lucia IRCCS, Roma, Italy.
Dipartimento di Psicologia 39, Università degli Studi di Roma 'La Sapienza', Roma, Italy; Fondazione Santa Lucia IRCCS, Roma, Italy.
Phys Life Rev. 2022 Sep;42:56-92. doi: 10.1016/j.plrev.2022.07.001. Epub 2022 Jul 13.
Experimental and theoretical studies have tried to gain insights into the involvement of the Temporal Parietal Junction (TPJ) in a broad range of cognitive functions like memory, attention, language, self-agency and theory of mind. Recent investigations have demonstrated the partition of the TPJ in discrete subsectors. Nonetheless, whether these subsectors play different roles or implement an overarching function remains debated. Here, based on a review of available evidence, we propose that the left TPJ codes both matches and mismatches between expected and actual sensory, motor, or cognitive events while the right TPJ codes mismatches. These operations help keeping track of statistical contingencies in personal, environmental, and conceptual space. We show that this hypothesis can account for the participation of the TPJ in disparate cognitive functions, including "humour", and explain: a) the higher incidence of spatial neglect in right brain damage; b) the different emotional reactions that follow left and right brain damage; c) the hemispheric lateralisation of optimistic bias mechanisms; d) the lateralisation of mechanisms that regulate routine and novelty behaviours. We propose that match and mismatch operations are aimed at approximating "free energy", in terms of the free energy principle of decision-making. By approximating "free energy", the match/mismatch TPJ system supports both information seeking to update one's own beliefs and the pleasure of being right in one's own' current choices. This renewed view of the TPJ has relevant clinical implications because the misfunctioning of TPJ-related "match" and "mismatch" circuits in unilateral brain damage can produce low-dimensional deficits of active-inference and predictive coding that can be associated with different neuropsychological disorders.
实验和理论研究试图深入了解颞顶联合区(TPJ)在广泛的认知功能中的作用,如记忆、注意力、语言、自我意识和心理理论。最近的研究表明,TPJ 可分为离散的亚区。然而,这些亚区是否发挥不同的作用或执行一个总体功能仍存在争议。在这里,我们根据现有证据的综述,提出左侧 TPJ 编码预期和实际的感觉、运动或认知事件之间的匹配和不匹配,而右侧 TPJ 编码不匹配。这些操作有助于跟踪个人、环境和概念空间中的统计关系。我们表明,这一假设可以解释 TPJ 在不同认知功能中的参与,包括“幽默”,并解释:a)右脑损伤中空间忽视的发生率较高;b)左脑和右脑损伤后情绪反应的不同;c)乐观偏见机制的半球偏侧化;d)调节常规和新颖行为的机制的偏侧化。我们提出,匹配和不匹配操作旨在根据决策的自由能原理来近似“自由能”。通过近似“自由能”,匹配/不匹配 TPJ 系统支持信息搜索以更新自己的信念,以及对自己当前选择正确的愉悦感。这种对 TPJ 的新观点具有相关的临床意义,因为单侧脑损伤中与 TPJ 相关的“匹配”和“不匹配”回路的功能障碍会产生主动推理和预测编码的低维缺陷,这些缺陷可能与不同的神经心理障碍有关。