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Meyer's Loop 不对称性的束轨迹追踪。

Tractography of Meyer's Loop asymmetries.

机构信息

National Research Council Institute for Biodiagnostics, Magnetic Resonance Technology, 435 Ellice Avenue, Winnipeg, MB R3B 1Y6, Canada.

Alberta Innovates Technology Futures, 435 Ellice Avenue, Winnipeg, MB R3B 1Y6, Canada.

出版信息

Epilepsy Res. 2014 Jul;108(5):872-82. doi: 10.1016/j.eplepsyres.2014.03.006. Epub 2014 Mar 26.

Abstract

PURPOSE

The purpose of the current study was to use diffusion tensor imaging (DTI) to conduct tractography of the optic radiations (OR) and its component bundles and to assess both the degree of hemispheric asymmetry and the inter-subject variability of Meyer's Loop (ML). We hypothesized that there are significant left versus right differences in the anterior extent of ML to the temporal pole (TP) in healthy subjects.

MATERIALS AND METHODS

DTI data were acquired on a 3T Siemens MRI system using a single-shot Spin Echo EPI sequence. The dorsal, central and ML bundles of the OR were tracked and visualized in forty hemispheres of twenty healthy volunteers. The uncinate fasciculus (UF) was also tracked in these subjects so that it could be used as a distinct anatomical reference. Measurements were derived for the distance between ML-TP, ML and the temporal horn (ML-TH) and ML and the uncinate fasciculus (ML-UF). Paired difference t-tests were carried out with SPSS 14.0.

RESULTS

ML and the UF were successfully tracked and visualized in all 20 volunteers. Significant hemispheric asymmetries were found for all measurements with left distances shorter than the right (P<0.005). In 50% of the subjects the left ML-UF distance was ≤1.9 mm.

CONCLUSION

The results support our hypothesis and demonstrate that left ML-TP distances are significantly shorter than right ML-TP distances. These asymmetries are also reflected in shorter left distances between ML-TH and ML-UF. Moreover, these results are of interest to left-sided temporal lobe epilepsy surgery because it is not only more likely to disturb the anterior extent of ML but also renders the often closely located posterior aspect of the left UF more vulnerable to potential surgical impact.

摘要

目的

本研究旨在使用弥散张量成像(DTI)对视辐射(OR)及其组成束进行束追踪,并评估Meyer 袢(ML)的左右半球不对称程度和个体间变异性。我们假设在健康受试者中,ML 到达颞极(TP)的前伸程度存在显著的左侧与右侧差异。

材料和方法

在 3T 西门子 MRI 系统上使用单次激发自旋回波 EPI 序列采集 DTI 数据。在二十名健康志愿者的四十个半球中追踪和可视化 OR 的背侧、中央和 ML 束。在这些受试者中还追踪了钩束(UF),以便将其用作明显的解剖学参考。对 ML-TP、ML 和颞角(ML-TH)以及 ML 和钩束(ML-UF)之间的距离进行了测量。使用 SPSS 14.0 进行配对差异 t 检验。

结果

在所有 20 名志愿者中均成功追踪和可视化了 ML 和 UF。所有测量值均存在显著的左右半球不对称,左侧距离短于右侧(P<0.005)。在 50%的受试者中,左侧 ML-UF 距离≤1.9mm。

结论

研究结果支持我们的假设,表明左侧 ML-TP 距离明显短于右侧 ML-TP 距离。这些不对称也反映在 ML-TH 和 ML-UF 之间的左侧距离较短。此外,这些结果对左侧颞叶癫痫手术具有重要意义,因为它不仅更有可能干扰 ML 的前伸程度,而且还使通常紧密相邻的左侧 UF 的后段更容易受到潜在手术影响。

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