口腔医学 ›› 2023, Vol. 43 ›› Issue (8): 686-689.doi: 10.13591/j.cnki.kqyx.2023.08.003

• 基础研究 • 上一篇    下一篇

颧骨孔的应用解剖

秦泗佳1,2,王泽童1,吴昊宸1,李秋瑶1,李润1,申佳玉1,许辛羽1,刘昌奎1()   

  1. 1 西安医学院口腔医学院口腔解剖生理学教研室,陕西西安(710075)
    2 西安医学院牙颌面组织再生与修复研究中心,陕西西安(710075)
  • 修回日期:2023-03-13 出版日期:2023-08-28 发布日期:2023-08-23
  • 通讯作者: 刘昌奎, Tel:(029)89560039, E-mail:dentistlck@126.com
  • 基金资助:
    陕西省科技创新团队(2022TD-54);西安医学院教育教学改革研究项目(2020JG-37);西安市未央区科技与信息工业局项目(202223)

Applied anatomy of zygomatic foramen

QIN Sijia1,2,WANG Zetong1,WU Haochen1,LI Qiuyao1,LI Run1,SHEN Jiayu1,XU Xinyu1,LIU Changkui1()   

  1. Department of Oral Anatomy and Physiology, Stomatological College of Xi’an Medical University, Xi’an 710075, China
  • Revised:2023-03-13 Online:2023-08-28 Published:2023-08-23

摘要:

目的 探究颧骨孔的解剖特点,丰富解剖学资料的同时为临床手术提供参考。方法 选取65个(130侧)成人完整干燥颅骨,观察颧面孔、颧眶孔和颧颞孔的位置、形状、数量、分布和分型,用游标卡尺和圆规等测量三孔分别距眶外缘、眶下孔的最短距离及两个颧面孔、颧眶孔和颧颞孔之间的距离。结果 颧面孔、颧眶孔和颧颞孔多为卵圆形,单侧可各有0~4个,分为Ⅰ~Ⅴ型,各孔分别有3侧(2.31%)、45侧(34.62%)、50侧(38.46%)、23侧(17.69%)、9侧(6.92%),3侧(2.31%)、51侧(39.23%)、50侧(38.46%)、19侧(14.62%)、7侧(5.38%),8侧(6.15%)、61侧(46.92%)、29侧(22.31%)、22侧(16.92%)、10侧(7.69%)。双侧数量相同的颧面孔、颧眶孔或颧颞孔分为A~D(1~4个)组,各孔分别有12个(18.46%)、13个(20.00%)、2个(3.08%)、2个(3.08%),16个(24.62%)、12个(18.46%)、3个(4.62%)、1个(1.54%),17个(26.15%)、3个(4.62%)、4个(6.15%)、1个(1.54%)。颧面孔、颧眶孔和颧颞孔距眶外缘、眶下孔的最短距离为(7.70±1.73)mm、(24.64±4.81)mm,(7.60±2.50)mm、(23.32±4.75)mm,(7.83±2.23)mm、(27.83±3.84)mm。一侧有两个颧面孔、颧眶孔或颧颞孔时,两颧面孔、颧眶孔和颧颞孔间距分别为(7.88±4.90)mm、(5.97±4.71)mm和(9.29±5.83)mm。左、右两侧的距离经统计分析P均>0.05,差异无统计学意义。结论 颧骨孔的解剖有助于理解该区域神经、血管的走行及变异情况,能为临床手术提供参考。

关键词: 颧面孔, 颧眶孔, 颧颞孔, 解剖

Abstract:

Objective To explore the anatomical characteristics of zygomatic foramen, enrich anatomical data and provide reference for clinical surgery. Methods Sixty-five intact and dry skulls(130 sides)of adults were selected to observe the position, shape, number, distribution and classification of zygomaticofacial foramen, zygomatico-orbital foramen and zygomaticotemporal foramen. Venier calipers and compasses were used to measure the shortest distance between the three foramen and lateral margin of orbit, the infraorbital foramen, and the distance between two zygomaticofacial foramen, zygomatico-orbital foramen and zygomaticotemporal foramen. Results The zygomaticofacial, zygomatico-orbital and zygomaticotemporal foramen were mostly oval, with 0 to 4 on each side, and can be divided into Ⅰ-Ⅴ types, with 3 sides (2.31%), 45 sides (34.62%), 50 sides (38.46%), 23 sides (17.69%), 9 sides (6.92%); 3 sides (2.31%), 51 sides (39.23%), 50 sides (38.46%), 19 sides (14.62%), 7 sides (5.38%); 8 sides (6.15%), 61 sides (46.92%), 29 sides (22.31%), 22 sides (16.92%) and 10 sides (7.69%) for each hole. The same number of zygomaticofacial, zygomatico-orbital or zygomaticotemporal foramen on both sides were divided into A-D (1-4) groups, with 12 (18.46%), 13 (20.00%), 2 (3.08%), 2 (3.08%); 16 (24.62%), 12 (18.46%), 3 (4.62%), 1 (1.54%); 17 (26.15%), 3 (4.62%), 4 (6.15%) and 1 (1.54%) for each hole. The shortest distance from the zygomaticofacial, zygomatico-orbital and zygomaticotemporal foramen to the lateral margin of orbit and infraorbital foramen was (7.70±1.73) mm, (24.64±4.81) mm; (7.60±2.50) mm, (23.32±4.75) mm; (7.83±2.23) mm, (27.83±3.84) mm. When there were two zygomaticofacial, zygomatico-orbital or zygomaticotemporal foramen on one side, the distance between the two zygomaticofacial, zygomatico-orbital and zygomaticotemporal foramen was (7.88±4.90) mm, (5.97±4.71) mm and (9.29±5.83) mm respectively. The distance between the left and right sides was statistically analyzed with P>0.05, and the difference was not statistically significant. Conclusion The anatomy of zygomaticforamen is helpful to understand the course and variation of the nerves and blood vessels in the area. It could provide reference for clinical operation.

Key words: zygomaticofacial foramen, zygomatico-orbital foramen, zygomaticotemporal foramen, anatomy

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