期刊文献+

脉络膜成像技术的进展及其在青光眼临床研究中的应用 被引量:1

Progress in choroid imaging technology and its application in glaucoma clinical research
原文传递
导出
摘要 脉络膜与青光眼关系的研究一直受限于研究方法而难以深入开展.近年,基于OCT技术的脉络膜成像技术例如增强深部成像OCT(EDI-OCT)和扫频光源OCT(SS-OCT)进入临床应用,青光眼领域借此观察了不同类型青光眼的脉络膜厚度及其有关影响因素,推进了脉络膜厚度与各种青光眼间关系的了解和认识. The relationship between the choroid and glaucoma has long been difficult to study due to the limitations of research methods.Based on OCT technology,choroid imaging techniques such as enhanced depth imaging OCT (EDI-OCT) and swept-source OCT (SS-OCT) have been an accepted clinical application in recent years.They are also used in the study of glaucoma to observe the choroidal thicknesses of various glaucomas and the related factors affecting the disease.These techniques promote an understanding and knowledge of the relationship between choroidal thickness and different types of glaucoma.
作者 任泽钦
出处 《中华眼视光学与视觉科学杂志》 CAS 2014年第10期626-630,635,共6页 Chinese Journal Of Optometry Ophthalmology And Visual Science
关键词 脉络膜厚度 体层摄影术 光学相干 青光眼 Choroidal thickness Tomography,optical coherence Glaucoma
  • 相关文献

参考文献36

  • 1Madonna RJ. The choroid and glaucoma[J]. Clin Eye Vis Care, 1998,10:17-20.
  • 2Quigley HA, Friedman DS, Congdon NG. Possible mechanisms of primary angle-closure and malignant glaucoma[J]. J Glaucoma, 2003,12:167-180.
  • 3Wong IY, Koizumi H, Lai WW. Enhanced depth imaging optical coherence tomography[J]. Ophthalmic Surg Lasers Imaging,2011, 42 :S75-S84.
  • 4Adhi M, Duker JS. Optical coherence tomegraphy-current and future applications[J]. Curt Opin Ophthalmol,2013,24:213-221.
  • 5Michalewska Z, Michalewski J, Nawrocki J. Swept-source OCT. wide-field simultaneous choroid, retina, and vitreous visualization [J]. Retina Today, 2013 : 50-52,56.
  • 6Mansouri K, Nuyen B, N Weinreb R. Improved visualization of deep ocular structures in glaucoma using high penetration optical coherence tomography[J]. Expert Rev Med Devices,2013, 10:621-628.
  • 7Banitt M. The choroid in glaucoma[J]. Curr Opin Ophthalmol, 2013,24 : 125-129.
  • 8Mrejeia S, Spaide RF. Optical coherence tomography: imaging of the choroid and beyond[J]. Surv Ophthalmol,2013,58:387- 429.
  • 9Wu L, Alpizar-Alvarez N. Choroidal imaging by spectral domain-optical coherence tomography[J]. Taiwan J Ophthalmol, 2013,3:3-13.
  • 10Spaide RF, Koizumi H, Pozzoni MC. Enhanced depth imaging spectral-domain optical coherence tomography[J]. Am J Ophthalmol, 2008,146 : 496-500.

二级参考文献15

  • 1潘英姿,任泽钦,李梅,乔荣华.开角型青光眼与正常大陷凹眼中视乳头旁萎缩区的比较研究[J].中华眼科杂志,2006,42(12):1078-1083. 被引量:9
  • 2吴玲玲,陈伟,陈芝清,尹金福,周卉,刘敬,苏兆安.青光眼视乳头旁脉络膜和视网膜萎缩的眼底血管造影研究[J].中华眼科杂志,2006,42(11):967-971. 被引量:3
  • 3Teng CC, De Moraes CG, Prata TS, et al. Beta-Zone parapapillary atrophy and the velocity of glaucoma progression. Ophthalmology, 2010, 117:909-915.
  • 4Lee E J, Kim TW, Weinreb RN, et al. β-Zone parapapillary atrophy and the rate of retinal nerve fiber layer thinning in glaucoma. Invest Ophthahnol Vis Sei, 2011, 52:4422-4427.
  • 5Yin ZQ, Vaegan, Millar TJ, et al. Widespread choroidal insufficiency in primary open-angle glaucoma. J Glaucoma, 1997, 6:23-32.
  • 6Spraul CW, Lang GE, Lang GK, et al. Morphometric changes of the choriocapillaris and the choroidal vasculature in eyes with advanced glaucomatous changes. Vision Res, 2002, 42:923-932.
  • 7Galassi F, Sodi A, Ucci F, et al. Ocular hemodynamics and glaucoma prognosis: a color Doppler imaging study. Arch Ophthalmol, 2003, 121 : 1711-1715.
  • 8Grunwald JE, Piltz J, Hariprasad SM, et al. Optic nerve and choroidal circulation in glaucoma. Invest Ophthalmol Vis Sei, 1998, 39:2329-2336.
  • 9Nicolela MT, Hnik P, Drance SM. Scanning laser Doppler flowmeter study of retinal and optic disk blood flow in glaucomatous patients. Am J Ophthalmol, 1996, 122:775-783.
  • 10Spaide RF. Age-related ch0roidal atrophy. Am J Ophthalmol, 2009, 147:801-810.

共引文献9

同被引文献16

  • 1Jabs DA, Nussenblatt RB, Rosenbaum JT; Standardization of Uveitis Nomenclature ( SUN) Working Group. Standardization of uveitis nomenclature for reporting clinical data. Results of the First International Workshop[J] . Am J Ophthaimol , 2005 , 140 (3) :509-516.
  • 2Rodriguez A,Akova YA, Pedroza-Seres, Foster CS. Posterior segment ocular manifestations in patients with HLA-B27-associated uveitis[J]. Ophthalmology ,1994,101 (7) : 1267-1274.
  • 3Uy HS,Christen WG,Foster CS. HLA-B27-associated uveitis and cystoid macular edema[J]. Ocul Immunol Injlamm, 2001,9 (3) : 177-183.
  • 4Coskun E, Gurler B , Pehlivan Y, Kisacik B, Okurnus S, Yayuspayi R , et al. Enhanced depth imaging optical coherence tomography findings in Behcet' s disease[J] . Ocul Immunol Inflamm ,2013 , 21 (6) :440-445.
  • 5Ishikawa S, Taguchi M, Muraoka T, Sakurai Y, Kanda T, Takeuchi M. Changes in subfoveal choroidal thickness associated with uveitis activity in patients with Behcet' s disease[J] . Br J Oph-thalrrwl,2014,98(11) :1508-1513.
  • 6Shao L,Xu L, Chen CX, Yang LH, Du KF, Wang S, et al. Reproducibility of subfoveal choroidal thickness measurements with enhanced depth imaging by spectral-domain optical coherence tomography[J] . Invest Ophthalmol Vis Sci, 2013 , 54 ( 1 ) : 230- 233.
  • 7Yamashita T, Yamashita T, Shirasawa M, Arimura N, Terasaki H, Sakamoto T. Repeatability and reproducibility of subfoveal choroidal thickness in normal eyes of Japanese using different SD-OCT devices[J] . Invest Ophthalmol Vis Sci, 2012 , 53 (3 ) : 1102-1107.
  • 8Margolis R,Spaide RF. A pilot study of enhanced depth imaging optical coherence tomography of the choroid in normal eyes[J] . Am J Ophthalrrwl,2013, 147 (5) :811-815.
  • 9Ikuno Y .Kawaguchi K,Nouchi T, Yasuno Y. Choroidal thickness in healthy Japanese subjects[J]. Invest Ophthalmol Vis Sci, 2010,51(4) :2173-2176.
  • 10Wei WB, Xu L, Jonas JB, Shao L, Du KF, Wang S, et al. Subfoveal choroidal thickness: the Beijing Eye Study[J] . Ophthalmol-ogy,2013 ,120(1) :175-180.

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部