海马旁回
扣带回(脑)
颞下回
医学
磁共振弥散成像
纤维束成像
白质
下纵束
神经科学
边缘叶
钩束
脑功能偏侧化
中央后回
解剖
弓状束
颞叶
磁共振成像
部分各向异性
心理学
放射科
癫痫
作者
Yueh‐Hsin Lin,Vukshitha Dhanaraj,Alana Mackenzie,Isabella M. Young,Onur Tanglay,Robert G. Briggs,Arpan R. Chakraborty,Jorge Hormovas,R. Dineth Fonseka,Sihyong J. Kim,Jacky T. Yeung,Charles Teo,Michael E. Sughrue
标识
DOI:10.1016/j.wneu.2020.12.136
摘要
The parahippocampal gyrus is understood to have a role in high cognitive functions including memory encoding and retrieval and visuospatial processing. A detailed understanding of the exact location and nature of associated white tracts could significantly improve postoperative morbidity related to declining capacity. Through diffusion tensor imaging−based fiber tracking validated by gross anatomic dissection as ground truth, we have characterized these connections based on relationships to other well-known structures. Diffusion imaging from the Human Connectome Project for 10 healthy adult controls was used for tractography analysis. We evaluated the parahippocampal gyrus as a whole based on connectivity with other regions. All parahippocampal gyrus tracts were mapped in both hemispheres, and a lateralization index was calculated with resultant tract volumes. We identified 2 connections of the parahippocampal gyrus: inferior longitudinal fasciculus and cingulum. Lateralization of the cingulum was detected (P < 0.05). The parahippocampal gyrus is an important center for memory processing. Subtle differences in executive functioning following surgery for limbic tumors may be better understood in the context of the fiber-bundle anatomy highlighted by this study.
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