Max Planck Institute for Psycholinguistics, Nijmegen, The Netherlands.
Philos Trans R Soc Lond B Biol Sci. 2012 Jul 19;367(1598):2023-32. doi: 10.1098/rstb.2012.0009.
In this paper, we present two novel perspectives on the function of the left inferior frontal gyrus (LIFG). First, a structured sequence processing perspective facilitates the search for functional segregation within the LIFG and provides a way to express common aspects across cognitive domains including language, music and action. Converging evidence from functional magnetic resonance imaging and transcranial magnetic stimulation studies suggests that the LIFG is engaged in sequential processing in artificial grammar learning, independently of particular stimulus features of the elements (whether letters, syllables or shapes are used to build up sequences). The LIFG has been repeatedly linked to processing of artificial grammars across all different grammars tested, whether they include non-adjacent dependencies or mere adjacent dependencies. Second, we apply the sequence processing perspective to understand how the functional segregation of semantics, syntax and phonology in the LIFG can be integrated in the general organization of the lateral prefrontal cortex (PFC). Recently, it was proposed that the functional organization of the lateral PFC follows a rostro-caudal gradient, such that more abstract processing in cognitive control is subserved by more rostral regions of the lateral PFC. We explore the literature from the viewpoint that functional segregation within the LIFG can be embedded in a general rostro-caudal abstraction gradient in the lateral PFC. If the lateral PFC follows a rostro-caudal abstraction gradient, then this predicts that the LIFG follows the same principles, but this prediction has not yet been tested or explored in the LIFG literature. Integration might provide further insights into the functional architecture of the LIFG and the lateral PFC.
在本文中,我们提出了左额下回(LIFG)功能的两个新视角。首先,结构化的序列处理视角有助于在 LIFG 中寻找功能分离,并提供了一种表达包括语言、音乐和动作在内的认知领域的共同方面的方法。来自功能磁共振成像和经颅磁刺激研究的汇聚证据表明,LIFG 参与了人工语法学习中的序列处理,而与元素的特定刺激特征(无论是使用字母、音节还是形状来构建序列)无关。LIFG 已被反复链接到所有不同语法的人工语法处理中,无论它们是否包含非相邻依赖性或仅仅是相邻依赖性。其次,我们应用序列处理视角来理解如何在 LIFG 中语义、句法和音系的功能分离可以整合到外侧前额叶皮层(PFC)的一般组织中。最近,有人提出,外侧 PFC 的功能组织遵循一个从头到尾的梯度,使得认知控制中的更抽象的处理由外侧 PFC 的更靠前的区域来支持。我们从这样的观点来探讨文献,即 LIFG 中的功能分离可以嵌入外侧 PFC 的一般从头到尾的抽象梯度中。如果外侧 PFC 遵循从头到尾的抽象梯度,那么这就预测 LIFG 也遵循相同的原则,但这一预测尚未在 LIFG 文献中进行测试或探索。整合可能为 LIFG 和外侧 PFC 的功能架构提供进一步的见解。