Cognitive Neuroscience Unit, Montreal Neurological Institute, McGill University, Montreal, Quebec H3A 2B4, Canada
Center for Research on Brain, Language and Music (CRBLM), Montreal, Quebec H3G 2A8, Canada.
eNeuro. 2024 Jan 29;11(1). doi: 10.1523/ENEURO.0363-23.2023. Print 2024 Jan.
The well-known arcuate fasciculus that connects the posterior superior temporal region with the language production region in the ventrolateral frontal cortex constitutes the classic peri-Sylvian dorsal stream of language. A second temporofrontal white matter tract connects ventrally the anterior to intermediate lateral temporal cortex with frontal areas via the extreme capsule. This temporofrontal extreme capsule fasciculus (TFexcF) constitutes the ventral stream of language processing. The precise origin, course, and termination of this pathway has been examined in invasive tract tracing studies in macaque monkeys, but there have been no standard protocols for its reconstruction in the human brain using diffusion imaging tractography. Here we provide a protocol for the dissection of the TFexcF in vivo in the human brain using diffusion magnetic resonance imaging (MRI) tractography which provides a solid basis for exploring its functional role. A key finding of the current dissection protocol is the demonstration that the TFexcF is left hemisphere lateralized. Furthermore, using the present dissection protocol, we demonstrate that the TFexcF is related to lexical retrieval scores measured with the category fluency test, in contrast to the classical arcuate fasciculus (the dorsal language pathway) that was also dissected and was related to sentence repetition.
连接后上颞区和额下回语言产生区的著名弓状束构成了经典的围绕侧裂的语言背侧流。第二个颞额白质束通过极囊从腹侧连接前外侧颞叶皮质与额区。这条颞额极囊束(TFexcF)构成了语言处理的腹侧流。在猕猴的侵袭性束追踪研究中已经检查了这条通路的确切起源、路径和终止,但在使用弥散成像束追踪技术对人类大脑进行重建时,还没有标准的方案。在这里,我们提供了一种使用弥散磁共振成像(MRI)束追踪技术在活体中对 TFexcF 进行解剖的方案,为探索其功能作用提供了坚实的基础。当前解剖方案的一个关键发现是证明了 TFexcF 是左侧偏侧化的。此外,使用本研究中的解剖方案,我们证明了 TFexcF 与类别流畅性测试中测量的词汇检索得分有关,而经典的弓状束(语言背侧流)也被解剖出来,并与句子重复有关。