Scheimpflug-Fotografie bei akutem Winkelblock
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  • 作者:Dr. J.D. Unterlauft ; Y. Yafai ; P. Wiedemann
  • 关键词:Akuter Winkelblock ; Glaukom ; Laseriridotomie ; Druckausgleich ; Kammervolumen ; Acute angle closure ; Glaucoma ; Laser iridotomy ; Pressure balance ; Chamber volume
  • 刊名:Der Ophthalmologe
  • 出版年:2013
  • 出版时间:September 2013
  • 年:2013
  • 卷:110
  • 期:9
  • 页码:862-868
  • 全文大小:541KB
  • 参考文献:1. Alsbirk PH (1974) Anterior chamber depth in Greenland Eskimos. I. A population study of variation with age and sex. Acta Ophthalmol (Copenh) 52:551-64
    2. Ang GS, Wells AP (2010) Changes in Caucasian eyes after laser peripheral iridotomy: an anterior segment optical coherence tomography study. Clin Experiment Ophthalmol 38:778-85 CrossRef
    3. Antoniazzi E, Pezzotta S, Delfino A et al (2010) Anterior chamber measurements taken with Pentacam: an objective tool in laser iridotomy. Eur J Ophthalmol 20:517-22
    4. Aung T, Husain R, Gazzard G et al (2004) Changes in retinal nerve fiber layer thickness after acute primary angle closure. Ophthalmology 111:1475-479 CrossRef
    5. Bonomi L, Marchini G, Marraffa M et al (2000) Epidemiology of angle-closure glaucoma: prevalence, clinical types, and association with peripheral anterior chamber depth in the Egna-Neumarket glaucoma study. Ophthalmology 107:998-003 CrossRef
    6. Chen D, Lam AK (2009) Reliability and repeatability of the Pentacam on corneal curvatures. Clin Exp Optom 92:110-18 CrossRef
    7. Dada T, Gadia R, Sharma A et al (2011) Ultrasound biomicroscopy in glaucoma. Surv Ophthalmol 56:433-50 CrossRef
    8. Foster PJ, Alsbirk PH, Baasanhu J et al (1997) Anterior chamber depth in Mongolians: variation with age, sex, and method of measurement. Am J Ophthalmol 124:53-0
    9. Gazzard G, Friedman DS, Devereux JG et al (2003) A prospective ultrasound biomicroscopy evaluation of changes in anterior segment morphology after laser iridotomy in Asian eyes. Ophthalmology 110:630-38 CrossRef
    10. He M, Friedman DS, Ge J et al (2007) Laser peripheral iridotomy in eyes with narrow drainage angles: ultrasound biomicroscopy outcomes. The Liwan eye study. Ophthalmology 114:1513-519 CrossRef
    11. He M, Friedman DS, Ge J et al (2007) Laser peripheral iridotomy in primary angle-closure suspects: biometric and gonioscopic outcomes: the Liwan eye study. Ophthalmology 114:494-00 CrossRef
    12. Jain R, Grewal D, Grewal SP (2012) Quantitative analysis of anterior chamber following peripheral laser iridotomy using Pentacam in eyes with primary angle closure. Eur J Ophthalmol
    13. Karandish A, Wirbelauer C, Haberle H et al (2006) OCT-goniometry before and after iridotomy in angle-closure glaucoma. Ophthalmologe 103:35-9 CrossRef
    14. Kawamorita T, Uozato H, Kamiya K et al (2009) Repeatability, reproducibility, and agreement characteristics of rotating Scheimpflug photography and scanning-slit corneal topography for corneal power measurement. J Cataract Refract Surg 35:127-33 CrossRef
    15. Klein BE, Klein R, Sponsel WE et al (1992) Prevalence of glaucoma. The Beaver dam eye study. Ophthalmology 99:1499-504
    16. Li S, Wang H, Mu D et al (2010) Prospective evaluation of changes in anterior segment morphology after laser iridotomy in Chinese eyes by rotating Scheimpflug camera imaging. Clin Experiment Ophthalmol 38:10-4 CrossRef
    17. Lowe RF (1970) Aetiology of the anatomical basis for primary angle-closure glaucoma. Biometrical comparisons between normal eyes and eyes with primary angle-closure glaucoma. Br J Ophthalmol 54:161-69 CrossRef
    18. Lowe RF, Clark BA (1973) Radius of curvature of the anterior lens surface. Correlations in normal eyes and in eyes involved with primary angle-closure glaucoma. Br J Ophthalmol 57:471-74 CrossRef
    19. Miranda MA, Radhakrishnan H, O’Donnell C (2009) Repeatability of oculus pentacam metrics derived from corneal topography. Cornea 28:657-66 CrossRef
    20. Muller M, Geerling G (2008) Anterior segment optical coherence tomography in glaucoma. Klin Monatsbl Augenheilkd 225:194-99 CrossRef
    21. Quigley HA (1996) Number of people with glaucoma worldwide. Br J Ophthalmol 80:389-93 CrossRef
    22. Rabsilber TM, Khoramnia R, Auffarth GU (2006) Anterior chamber measurements using Pentacam rotating Scheimpflug camera. J Cataract Refract Surg 32:456-59 CrossRef
    23. Ramesh S, Maw C, Sutton CJ et al (2005) Ethnic aspects of acute primary angle closure in a UK mulicultural conurbation. Eye (Lond) 19:1271-275
    24. Read SA, Collins MJ, Iskander DR et al (2009) Corneal topography with Scheimpflug imaging and videokeratography: comparative study of normal eyes. J Cataract Refract Surg 35:1072-081 CrossRef
    25. Scheie HG (1957) Width and pigmentation of the angle of the anterior chamber: a system of grading by gonioscopy. AMA Arch Ophthalmol 58:510-12 CrossRef
    26. Seah SK, Foster PJ, Chew PT et al (1997) Incidence of acute primary angle-closure glaucoma in Singapore. An island-wide survey. Arch Ophthalmol 115:1436-440 CrossRef
    27. See JL, Chew PT, Smith SD et al (2007) Changes in anterior segment morphology in response to illumination and after laser iridotomy in Asian eyes: an anterior segment OCT study. Br J Ophthalmol 91:1485-489 CrossRef
    28. Shaffer RN (1960) Primary glaucomas. Gonioscopy, ophthalmoscopy and perimetry. Trans Am Acad Ophthalmol Otolaryngol 64:112-27
    29. Shankar H, Taranath D, Santhirathelagan CT et al (2008) Anterior segment biometry with the Pentacam: comprehensive assessment of repeatability of automated measurements. J Cataract Refract Surg 34:103-13 CrossRef
    30. Sihota R, Lakshmaiah NC, Agarwal HC et al (2000) Ocular parameters in the subgroups of angle closure glaucoma. Clin Experiment Ophthalmol 28:253-58 CrossRef
    31. Snow JT (1977) Value of prophylactic peripheral iridectomy on the second eye in angle-closure glaucoma. Trans Ophthalmol Soc U K 97:189-91
    32. Spaeth GL (1971) The normal development of the human anterior chamber angle: a new system of descriptive grading. Trans Ophthalmol Soc U K 91:709-39
    33. Sun X, Ji X, Zheng Y et al (1994) Primary chronic angle-closure glaucoma in Chinese -a clinical exploration of its pathogenesis and natural course. Yan Ke Xue Bao 10:176-85
    34. Talajic JC, Lesk MR, Nantel-Battista M et al (2012) Anterior segment changes after pilocarpine and laser iridotomy for primary angle-closure suspects with Scheimpflug photography. J Glaucoma
    35. Tham CC, Kwong YY, Lai JS et al (2006) Effect of a previous acute angle closure attack on the corneal endothelial cell density in chronic angle closure glaucoma patients. J Glaucoma 15:482-85 CrossRef
  • 作者单位:Dr. J.D. Unterlauft (1)
    Y. Yafai (1)
    P. Wiedemann (1)

    1. Universit?ts-Augenklinik Leipzig, Liebigstr. 10-4, 04106, Leipzig, Deutschland
  • ISSN:1433-0423
文摘
Purpose In acute angle-closure glaucoma a laser iridotomy (IO) is performed to balance the intraocular pressure between the anterior and posterior chambers. The changes induced in the anterior chamber architecture were analyzed using Scheimpflug photography. Material and methods Scheimpflug photography was performed in eyes with acute angle closure and in the contralateral eyes before and after IO. Results In a group of 10 patients (8♀, 2? average age71.2?±-.3 years) 10 eyes with acute angle closure and 10 contralateral eyes were analyzed. The anterior chamber depth, central corneal thickness and anterior chamber angle did not change significantly after IO. The mean anterior chamber volume showed a statistically significant increase in the 10 eyes with acute angle closure and in the 10 contralateral eyes. Conclusion Anterior chamber volume increases due to IO but not anterior chamber depth, central corneal thickness and anterior chamber angle in eyes with acute angle closure.

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