Yamazaki Masahiro, Naganawa Shinji, Bokura Kiminori, Kawai Hisashi
Department of Radiology, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Nagoya J Med Sci. 2014 Aug;76(3-4):285-91.
The purpose of this study was to elucidate which white matter (WM)-tracts are visualized on heavily T2-weighted three-dimensional fluid-attenuated inversion-recovery (hT2w-3D-FLAIR) images. Records of seven patients who underwent hT2w-3D-FLAIR and diffusion tensor imaging (DTI) of the head at 3 Tesla were analyzed. Two neuroradiologists determined WM-tracts visualized on hT2w-3D-FLAIR and identified anatomical points through which they ran. A third neuroradiologist determined the WM-tracts running through those points on DTI. Correspondence between hT2w-3D-FLAIR and DTI WM-tracts was used to confirm technique validity. As a result, the corticospinal tract (CST), medial lemniscus (ML), and superior cerebellar peduncle (SCP) were visualized as high intensity on hT2w-3D-FLAIR and ran through the following points: CST, 20 mm lateral from the lateral margin of the third ventricle at the thalamic level; ML, 6 mm anterior to the anterior margin of the fourth ventricle at the trigeminal nerve level; and SCP, just lateral to the fourth ventricle at the trigeminal nerve level. The third neuroradiologist determined that the WM-tracts ran through those points on DTI in all patients. Consequently, WM-tracts determined on hT2w-3D-FLAIR and DTI completely corresponded. In conclusion, the CST, ML, and SCP were visualized as high intensity on hT2w-3D-FLAIR. This technique is a potentially supplemental DTI neurographic modality.
本研究的目的是阐明在重T2加权三维液体衰减反转恢复(hT2w-3D-FLAIR)图像上哪些白质(WM)束可显影。分析了7例在3特斯拉下接受头部hT2w-3D-FLAIR和扩散张量成像(DTI)的患者记录。两名神经放射科医生确定了hT2w-3D-FLAIR上可见的WM束,并确定了它们所经过的解剖学点。第三名神经放射科医生确定了DTI上穿过这些点的WM束。hT2w-3D-FLAIR和DTI WM束之间的对应关系用于确认技术有效性。结果,皮质脊髓束(CST)、内侧丘系(ML)和上小脑脚(SCP)在hT2w-3D-FLAIR上显示为高强度,并经过以下点:CST,在丘脑水平距第三脑室外侧缘20毫米处;ML,在三叉神经水平距第四脑室前缘6毫米处;SCP,在三叉神经水平刚好位于第四脑室外侧。第三名神经放射科医生确定所有患者的DTI上WM束都穿过这些点。因此,hT2w-3D-FLAIR和DTI上确定的WM束完全对应。总之,CST、ML和SCP在hT2w-3D-FLAIR上显示为高强度。该技术是一种潜在的补充DTI神经成像方式。