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三维CT在先天性上斜肌麻痹中的应用 被引量:2

Application research of dimensional CT in congenital superior oblique palsy
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摘要 目的:用三维CT观察单眼上斜肌麻痹患者的双眼上斜肌影像差异。方法:临床横断面研究。给30例临床诊断单眼先天性上斜肌麻痹的患者进行三维CT检查。在冠状位测量患者双眼上斜肌最大横截面面积和CT值。结果:麻痹眼和非麻痹眼上斜肌肌腹的最大横截面面积分别为4.52±1.49,8.80±1.42mm2;CT值分别为11.57±22.88,35.13±9.74。麻痹眼上斜肌肌腹的最大横截面面积和CT值都明显小于非麻痹眼,差异非常显著,有统计学意义。结论:三维CT扫描显示单眼先天性上斜肌麻痹患者麻痹眼的上斜肌肌腹的横截面面积和CT值明显比非麻痹眼的上斜肌肌腹的横截面面积和CT值小。 AIM: To observe the image difference of dimensional CT monocular superior oblique palsy form the patient's eyes. METHODS : Clinical cross-sectional study included of 30 cases which clinically diagnosed monocular congenital superior oblique palsy for dimensional CT. CT values were measured at the position of coronal oblique maximum cross-sectional area at patient eyes. RESULTS: Ocular and non-ocular paralysis of superior oblique muscle belly maximum cross-sectional area were 4.52±1.49, 8.80±1.42mm2, respectively. CT values were 11.57±22.88 and 35.13±9.74. Paralysis of eye muscles abdominal oblique maximum cross-sectional area and CT values were significantly less than those of the non paralyzed eye. The difference had statistical significance. CONCLUSION: The results of dimensional CT scan shows that the CT value of patients with monocular congenital superior oblique palsy superior oblique eye muscle paralysis abdominal cross-sectional area is significantly higher than that of the non-paralyzed eye on the oblique abdominal muscle cross-sectional area.
出处 《国际眼科杂志》 CAS 2013年第10期2160-2162,共3页 International Eye Science
关键词 三维CT 上斜肌麻痹 上斜肌 dimensional CT superior oblique palsy superior oblique
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参考文献5

  • 1Demer JL, Miller JM. Magnetic resonance imaging of the functional anatomy of the superior oblique muscle. Invest Ophthalmol Vis Sci ,2005 ; 36(5 ) :906-913. 被引量:1
  • 2Sato M, Yagasaki T, Kora T, et al . Comparison of muscle volume between congenital and acquired superior oblique palsies by magnetic resonance imaging. Jpn J Ophthalmol ,2008 ;42(6):466-470. 被引量:1
  • 3Sato M. Magnetic resonance imaging and tendon anomaly associated with congenital Superior oblique palsy. Amn J Ophthalmol ,2009; 127 (4) :379-387. 被引量:1
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  • 5Shokida F, Eleta M, Gabriel J, et al . Superior oblique muscle MRI asymmetry and vertical deviation in patients with unilateral superior oblique palsy. Binocul Vis Strabismus Q ,2006 ;21 ( 3 ) : 137-146. 被引量:1

二级参考文献7

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共引文献8

同被引文献20

  • 1李月平,赵堪兴,张云亭,李亚军.MRI在上斜肌麻痹中的应用研究[J].眼科研究,2004,22(6):653-656. 被引量:9
  • 2周伊顗,王广志,丁辉,焦永红.眼球-眼外肌有限元模型的建立与力学分析[J].北京生物医学工程,2006,25(3):228-230. 被引量:5
  • 3Demer JL, Miller JM. Magnetic resonance imaging of Ihe functional anatomy of the superior oblique muscle. Invest Ophthalmol Vis Sci 1995, 36(5 ) :906-913. 被引量:1
  • 4Sato M, Yagasaki T, Kora T, et al . Comparison of muscle volume between congenital anti acquired superior oblique palsies by magnetic resonance imaging. Jpn J Ophthalmol 1998 ,42 ( 6 ) :466-470. 被引量:1
  • 5Sato M. Magnetic resonmlce imaging and tendan anonraly a.~,~,eiated with congenital Superior oblique t~sy. Am. J Ophtludmol 1999,127(4) :379-387. 被引量:1
  • 6Shokida F, Eleta M, Gabriel J, et al. Superior oblique muscle MRI asymmetry and vertical deviation in patients with unilateral superior oblique palsy. Binocul Vis Strabismus Q 2006 , 21 ( 3 ) : 137-146. 被引量:1
  • 7Clark RA, Demer JL. Enhanced vertical rectus contractility by magnetic resonance imaging in superior oblique palsy. Arch Ophthalmol 2011 , 129 ( 7 ) :904-908. 被引量:1
  • 8Shokida F, Eleta M, Gabriel J, et al. Superior oblique muscle MRI asymmetry and vertical deviation in patients with tmilateral superior oblique palsy. Binocul Vis Strabismus Q 2006 ,21 ( 3 ) : 137-146. 被引量:1
  • 9Kono R, Okanobu H, Ohtsuki H, et al . Absenee of relationship between oblique muscle size and bielschowsky head tihphenomenon in clinically diagnosed superior oblique palsy. Im,est Ophtbalmol Vis Sci 2009,50( 1 ) :175-179. 被引量:1
  • 10Kono R, Demer JL. Magnetic resonance imaging of the ftmctional anatomy of the inferior obliquenmscle in superior oblique palsy. Ophthalmology 2003 , 110 ( 6 ) : 1219 - 1229. 被引量:1

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