Department of Psychology, Florida International University, Miami, FL, USA.
Department of Psychology, Florida International University, Miami, FL, USA.
Cortex. 2019 Feb;111:148-163. doi: 10.1016/j.cortex.2018.10.015. Epub 2018 Nov 1.
In this review, we examine the structural connectivity of a recently-identified fiber pathway, the frontal aslant tract (FAT), and explore its function. We first review structural connectivity studies using tract-tracing methods in non-human primates, and diffusion-weighted imaging and electrostimulation in humans. These studies suggest a monosynaptic connection exists between the lateral inferior frontal gyrus and the pre-supplementary and supplementary motor areas of the medial superior frontal gyrus. This connection is termed the FAT. We then review research on the left FAT's putative role in supporting speech and language function, with particular focus on speech initiation, stuttering and verbal fluency. Next, we review research on the right FAT's putative role supporting executive function, namely inhibitory control and conflict monitoring for action. We summarize the extant body of empirical work by suggesting that the FAT plays a domain general role in the planning, timing, and coordination of sequential motor movements through the resolution of competition among potential motor plans. However, we also propose some domain specialization across the hemispheres. On the left hemisphere, the circuit is proposed to be specialized for speech actions. On the right hemisphere, the circuit is proposed to be specialized for general action control of the organism, especially in the visuo-spatial domain. We close the review with a discussion of the clinical significance of the FAT, and suggestions for further research on the pathway.
在这篇综述中,我们研究了最近确定的纤维通路——额斜束(FAT)的结构连接,并探讨了其功能。我们首先回顾了使用非人类灵长类动物的示踪方法和人类的弥散加权成像和电刺激进行的结构连接研究。这些研究表明,外侧下额回与内侧额上回的预备和补充运动区之间存在单突触连接。这个连接被称为 FAT。然后,我们回顾了关于左 FAT 在支持言语和语言功能方面的假设作用的研究,特别关注言语起始、口吃和言语流畅性。接下来,我们回顾了关于右 FAT 支持执行功能(即行动的抑制控制和冲突监测)的假设作用的研究。我们通过提出 FAT 通过解决潜在运动计划之间的竞争,在规划、定时和协调连续运动方面发挥着一般的作用,总结了现有的实证工作。然而,我们也提出了一些跨半球的专业化。在左半球,该回路被提议专门用于言语动作。在右半球,该回路被提议专门用于生物体的一般动作控制,特别是在视空间域。最后,我们讨论了 FAT 的临床意义,并对该通路的进一步研究提出了建议。