4.4 Article

HIGH-RESOLUTION OPTICAL COHERENCE TOMOGRAPHY, AUTOFLUORESCENCE, AND INFRARED REFLECTANCE IMAGING IN SJOGREN RETICULAR DYSTROPHY

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LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1097/IAE.0b013e3182899274

关键词

Sjogren reticular dystrophy; autofluorescence imaging; infrared reflectance imaging; spectraldomain optical coherence tomography; pigmentary deposits; lipofuscin; reticular pattern; retinal function; electroretinography; visual fields

资金

  1. Research Foundation Flanders (Belgium) [OZP 3G004306]

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Purpose: To describe the phenotype of three cases of Sjogren reticular dystrophy in detail, including high-resolution optical coherence tomography, autofluorescence imaging, and near-infrared reflectance imaging. Methods: Two unrelated teenagers were independently referred for ophthalmologic evaluation. Both underwent a full ophthalmologic workup, including electrophysiologic and extensive imaging with spectral-domain optical coherence tomography, autofluorescence imaging, and near-infrared reflectance imaging. In addition, mutation screening of ABCA4, PRPH2, and the mitochondrial tRNALeu gene was performed in Patient 1. Subsequently, the teenage sister of Patient 2 was examined. Results: Strikingly similar phenotypes were present in these three patients. Fundoscopy showed bilateral foveal pigment alterations, and a lobular network of deep retinal, pigmented deposits throughout the posterior pole, tapering toward the midperiphery, with relative sparing of the immediate perifoveal macula and peripapillary area. This network is mildly to moderately hyperautofluorescent on autofluorescence and bright on near-infrared reflectance imaging. Optical coherence tomography showed abnormalities of the retinal pigment epithelium-Bruch membrane complex, photoreceptor outer segments, and photoreceptor inner/outer segment interface. The results of retinal function test were entirely normal. No molecular cause was detected in Patient 1. Conclusion: Imaging suggested that the lobular network of deep retinal deposits in Sjogren reticular dystrophy is the result of accumulation of both pigment and lipofuscin between photoreceptors and retinal pigment epithelium, as well as within the retinal pigment epithelium.

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