首页> 外文期刊>AJNR. American journal of neuroradiology >Detailed MR imaging anatomy of the cisternal segments of the glossopharyngeal, vagus, and spinal accessory nerves in the posterior fossa: the use of 3D balanced fast-field echo MR imaging.
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Detailed MR imaging anatomy of the cisternal segments of the glossopharyngeal, vagus, and spinal accessory nerves in the posterior fossa: the use of 3D balanced fast-field echo MR imaging.

机译:后颅窝舌咽,迷走神经和脊柱副神经的脑池节段的详细MR成像解剖:使用3D平衡快速回声MR成像。

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BACKGROUND AND PURPOSE: The cisternal segments of the lower cranial nerves (CNs) adjacent to the jugular foramen (JF) are difficult to identify reliably by routine MR imaging. We performed a 3D balanced fast-field echo imaging technique (3D-bFFE) to obtain detailed anatomy of the cisternal segments of CNs IX, X, and XI. MATERIALS AND METHODS: 3D-bFFE was used to image the cisternal segments of the lower CNs in 20 healthy volunteers. As an anatomic landmark, CSF recesses adjacent to the JF were divided into 3 parts: the recess for the cochlear aqueduct, the recess for CN IX, and the recess for the CN X/XI complex. MR images were evaluated to identify the cisternal segment of each cranial nerve in relation to these anatomic landmarks. RESULTS: The mean angles of the recess for the cochlear aqueduct for CN IX and CN X/XI to the posterior petrous bone were 41.6 +/- 2.5 degrees , 69.7 +/- 3.1 degrees , and 76.0 +/- 3.4 degrees , respectively (P < .01). The mean length of the recess for the cochlear aqueduct for CN IX and the CN X/XI complex was 5.91 +/- 0.19, 5.08 +/- 0.11, and 4.76 +/- 0.13 cm, respectively (P < .01). 3D-bFFE adequately depicted the cisternal segments of CN IX on 38 sides (95%) and the CN X/XI complex on 39 sides (97.5%). CONCLUSIONS: The cisternal segments of CN IX, CN X, and CN XI are well identified by using 3D-bFFE, especially by determining the angles of the CSF recesses adjacent to the JF.
机译:背景与目的:难以通过常规MR成像可靠地识别与颈静脉(JF)相邻的下颅神经(​​CNs)的胸骨节段。我们进行了3D平衡快速场回波成像技术(3D-bFFE),以获取CN IX,X和XI的脑池节段的详细解剖结构。材料与方法:3D-bFFE被用来对20名健康志愿者的下CNs的脑池段进行成像。作为解剖学界标,与JF相邻的CSF凹陷分为3部分:耳蜗导水管的凹陷,CN IX的凹陷和CN X / XI复合体的凹陷。 MR图像进行了评估,以识别与这些解剖标志有关的每个颅神经的胸骨节段。结果:CN IX和CN X / XI的耳蜗导水管与后岩骨的平均凹角分别为41.6 +/- 2.5度,69.7 +/- 3.1度和76.0 +/- 3.4度( P <.01)。 CN IX和CN X / XI复合体的耳蜗导水管的凹槽平均长度分别为5.91 +/- 0.19、5.08 +/- 0.11和4.76 +/- 0.13 cm(P <.01)。 3D-bFFE充分描绘了CN IX的38个侧面(95%)的脑骨段和CN X / XI络合物的39个侧面(97.5%)。结论:通过使用3D-bFFE,特别是通过确定与JF相邻的CSF凹部的角度,可以很好地识别CN IX,CN X和CN XI的胸骨节段。

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