首页> 外文期刊>AJNR. American journal of neuroradiology >High-resolution 3D MR imaging of the trochlear nerve.
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High-resolution 3D MR imaging of the trochlear nerve.

机译:滑车神经的高分辨率3D MR成像。

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BACKGROUND AND PURPOSE: The cisternal segment of the trochlear nerve is difficult to identify reliably by routine MR imaging. We investigated the visibility and anatomic features of the trochlear nerve by using high-resolution 3D-bTFE imaging in healthy subjects. MATERIALS AND METHODS: This study was conducted with 32 healthy subjects without ocular movement disorders. For us to visualize the cisternal segment of the trochlear nerve, all subjects underwent 3D-bTFE imaging at 3T with 2 different resolutions: conventional resolution (voxel size, 0.67 x 0.45 x 1.4 mm) and high resolution (voxel size, 0.3 x 0.3 x 0.25 mm). Visibility of the trochlear nerve was graded with the use of a qualitative scale of certainty as follows: definite, probable, and indeterminate. The diameter of the trochlear nerve was measured. RESULTS: On conventional-resolution images, the visibility of the trochlear nerve was definite in 3 nerves, probable in 12 nerves, and indeterminate in 49 nerves. On high-resolution images, visibility was definite in 63 nerves and probable in 1 nerve. The mean diameter of the trochlear nerve was 0.54 mm (range, 0.35-0.96 mm). CONCLUSIONS: The trochlear nerve was visualized 100% of the time on high-resolution imaging with a voxel smaller than the nerve diameter. High-resolution imaging should have an important role in investigating the pathogenic mechanism of neuropathic strabismus, such as congenital superior oblique palsy.
机译:背景与目的:常规MR成像很难可靠地识别出滑车神经的胸骨节段。我们通过在健康受试者中使用高分辨率3D-bTFE成像技术研究了滑车神经的可见性和解剖学特征。材料与方法:本研究是针对32名无眼动障碍的健康受试者进行的。为了使可视化滑车神经的胸骨节段,所有受试者均以3种分辨率在3T下进行了3D-bTFE成像:常规分辨率(体素尺寸,0.67 x 0.45 x 1.4 mm)和高分辨率(体素尺寸,0.3 x 0.3 x 0.25毫米)。使用定性的定性量表对滑车神经的可见性进行分级,如下:确定的,可能的和不确定的。测量了滑车神经的直径。结果:在常规分辨率的图像上,滑车神经的可见度在3条神经中是确定的,在12条神经中是可能的,在49条神经中是不确定的。在高分辨率图像上,可见性在63条神经中是确定的,在1条神经中是可能的。滑车神经的平均直径为0.54毫米(范围为0.35-0.96毫米)。结论:高分辨率图像上100%的时间可视化了滑车神经,体素小于神经直径。高分辨率成像在调查神经性斜视(如先天性上斜肌麻痹)的致病机制中应发挥重要作用。

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