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首页> 外文期刊>The Journal of craniofacial surgery >A New Method of Locating the Optic Canal Based on Structures in Sella Region: Computed Tomography Study
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A New Method of Locating the Optic Canal Based on Structures in Sella Region: Computed Tomography Study

机译:基于区域结构的视神经管定位的新方法:计算机断层扫描研究

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摘要

Background: The location of optic canal and the intracranial segment of optic nerve is difficult because of the high possibility of the deficiency of optic protuberance as well as its complex relationship to sphenoid and ethmoidal sinus. A new method of locating the optic canal and a comprehensive analysis of it and the structures around is of great importance.Purpose: Our study aimed to provide a new method to locate the optic canal and analyze the relationship between optic canal and other structures in the sella region, which can be a guidance for en-doscopic sinus surgery such as the optic nerve decompression and transsphenoidal approach to the pituitary adenoma and reduced complications caused by the injury of optic nerve. Methods: Computed tomography images of 120 sphenoid sinuses in adults were reviewed, and multiplanar reconstruction was used to make it possible to make the measurement in coronal, sagittal, and axial plane at the same time. The positional relationship between optic canal and the stationary structures in sella region was analyzed. Results: The horizontal distance between the lowest point of sella bottom (SB) and sulcus prechiasmaticus in the sagittal plane was 8.08 (SD, 0.79) mm. The distance between the medial wall of optic canal and the midline of SB were 7.01 (SD, 1.43) mm in plane 1,7.78 (SD, 0.86) mm in plane 2,11.08 (SD, 0.82) mm in plane 3, and 13.81 (SD, 0.66) mm in plane 4; the angles between line BO and line BC were 87.99 (SD, 5.04) degrees in plane 1, 87/71 (SD, 4.98) degrees in plane 2, 82.54 (SD, 5.78) degrees in plane 3, and 82.57 (SD, 6.99) degrees in plane'4. As for the relationship between optic canal and the sphenoid sinus, there were 2.08% of sphenoid sinus of type A, 19.17% of type B, 45.00% of type C, 17.50% of type D, and 16.25% of type E.Conclusions: Optic canal can be located by the structures or markers in sella region such as the midline of SB, the lowest point of SB, the midpoint in the top edge of sphenoid sinus, and tubercular
机译:背景:视神经管和颅内节段的位置很困难,因为视神经突起缺乏的可能性很高,而且与蝶骨和筛窦的关系复杂。目的:一种新的定位视神经管的方法,对其周围结构进行综合分析,具有重要意义。目的:本研究旨在提供一种定位视神经管并分析视神经管与视神经管其他结构之间关系的新方法。蝶鞍区,可作为内窥镜鼻窦手术的指导,例如视神经减压和经蝶窦入路垂体腺瘤以及减少因视神经损伤引起的并发症。方法:回顾性分析了成人120例蝶窦的X线断层扫描图像,并使用多平面重建技术同时进行了冠状,矢状和轴向的测量。分析了蝶鞍区视神经管与固定结构之间的位置关系。结果:在矢状面中,蝶鞍底部(SB)的最低点与前唇沟之间的水平距离为8.08(SD,0.79)mm。视神经管内侧壁和SB中线之间的距离在平面中为7.01(SD,1.43)mm在平面中为1.7.78(SD,0.86)mm在平面3,11.08(SD,0.82)mm在平面3中为13.81 (SD,0.66)mm在平面4中;线BO和BC线之间的角度在平面1中为87.99(SD,5.04)度,在平面2中为87/71(SD,4.98)度,在平面3中为82.54(SD,5.78)度,在平面3中为82.57(SD,6.99) )平面'4。就视神经管与蝶窦的关系而言,A型蝶窦占2.08%,B型蝶窦占19.17%,C型占45.00%,D型占17.50%,E型占16.25%。视神经管可以通过蝶鞍区的结构或标志物定位,例如SB的中线,SB的最低点,蝶窦上缘的中点和结核

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