Decoding the superior parietal lobule connections of the superior longitudinal fasciculus/arcuate fasciculus in the human brain

弓状束 上纵束 顶叶下小叶 顶叶上小叶 神经科学 颞叶 顶叶 纤维束成像 磁共振弥散成像 白质 颞上回 解剖 人脑 心理学 角回 颞叶皮质 生物 部分各向异性 医学 磁共振成像 功能磁共振成像 癫痫 放射科
作者
Arash Kamali,Haris I. Sair,Alireza Radmanesh,Khader M. Hasan
出处
期刊:Neuroscience [Elsevier BV]
卷期号:277: 577-583 被引量:75
标识
DOI:10.1016/j.neuroscience.2014.07.035
摘要

The temporo-parietal (TP) white matter connections between the inferior parietal lobule and superior temporal gyrus as part of the superior longitudinal fasciculus/arcuate fasciculus (SLF/AF) or middle longitudinal fasciculus (MdLF) have been studied in prior diffusion tensor tractography (DTT) studies. However, few studies have been focusing on the higher TP connections of the superior parietal lobule with the temporal lobe. These higher TP connections have been shown to have a role in core processes such as attention, memory, emotions, and language. Our most recent study, for the first time, hinted to the possibility of a long white matter connection interconnecting the superior parietal lobule (SPL) with the posterior temporal lobe in human brain which we call the SLF/AF TP-SPL and for a shorter abbreviation, the TP-SPL. We decided to further investigate this white matter connection using fiber assignment by continuous tracking deterministic tractography and high spatial resolution diffusion tensor imaging on 3T. Five healthy right-handed men (age range 24-37 years) were studied. We delineated the SPL connections of the SLF/AF TP bilaterally in five normal adult human brains. Using a high resolution DTT technique, we demonstrate for the first time, the trajectory of a long fiber bundle connectivity between the SPL and posterior temporal lobe, called the SLF/AF TP-SPL (or the TP-SPL), bilaterally in five healthy adult human brains. We also demonstrate the trajectory of the vertically oriented posterior TP connections, interconnecting the inferior parietal lobule (IPL) with the posterior temporal lobe (TP-IPL) in relation to the TP-SPL, arcuate fasciculus and other major language pathways. In the current study, for the first time, we categorized the TP connections into the anterior and posterior connectivity groups and subcategorized each one into the SPL or IPL connections.
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