Burks Joshua D, Boettcher Lillian B, Conner Andrew K, Glenn Chad A, Bonney Phillip A, Baker Cordell M, Briggs Robert G, Pittman Nathan A, O'Donoghue Daniel L, Wu Dee H, Sughrue Michael E
Department of Neurosurgery University of Oklahoma Health Sciences Center Oklahoma City OK USA.
Department of Cell Biology University of Oklahoma Health Sciences Center Oklahoma City OK USA.
Brain Behav. 2017 Mar 8;7(4):e00640. doi: 10.1002/brb3.640. eCollection 2017 Apr.
Interest in the function of the inferior parietal lobule (IPL) has resulted in increased understanding of its involvement in visuospatial and cognitive functioning, and its role in semantic networks. A basic understanding of the nuanced white-matter anatomy in this region may be useful in improving outcomes when operating in this region of the brain. We sought to derive the surgical relationship between the IPL and underlying major white-matter bundles by characterizing macroscopic connectivity.
Data of 10 healthy adult controls from the Human Connectome Project were used for tractography analysis. All IPL connections were mapped in both hemispheres, and distances were recorded between cortical landmarks and major tracts. Ten postmortem dissections were then performed using a modified Klingler technique to serve as ground truth.
We identified three major types of connections of the IPL. (1) Short association fibers connect the supramarginal and angular gyri, and connect both of these gyri to the superior parietal lobule. (2) Fiber bundles from the IPL connect to the frontal lobe by joining the superior longitudinal fasciculus near the termination of the Sylvian fissure. (3) Fiber bundles from the IPL connect to the temporal lobe by joining the middle longitudinal fasciculus just inferior to the margin of the superior temporal sulcus.
We present a summary of the relevant anatomy of the IPL as part of a larger effort to understand the anatomic connections of related networks. This study highlights the principle white-matter pathways and highlights key underlying connections.
对顶下小叶(IPL)功能的关注使得人们对其在视觉空间和认知功能中的作用以及在语义网络中的角色有了更多了解。对该区域细微的白质解剖结构有基本认识,可能有助于改善在大脑这个区域进行手术时的效果。我们试图通过描述宏观连接来推导IPL与潜在主要白质束之间的手术关系。
使用来自人类连接组计划的10名健康成年对照的数据进行纤维束成像分析。在两个半球中绘制所有IPL连接,并记录皮质标志与主要纤维束之间的距离。然后使用改良的克林格勒技术进行10次尸体解剖作为对照标准。
我们确定了IPL的三种主要连接类型。(1)短联合纤维连接缘上回和角回,并将这两个回与顶上小叶相连。(2)IPL的纤维束通过在外侧裂末端附近加入上纵束与额叶相连。(3)IPL的纤维束通过在上颞沟边缘下方加入中纵束与颞叶相连。
我们总结了IPL的相关解剖结构,作为理解相关网络解剖连接的更大努力的一部分。本研究强调了主要的白质通路,并突出了关键的潜在连接。