Literature DB >> 23648999

Outer retina analysis by optical coherence tomography in cone-rod dystrophy patients.

Luiz H Lima1, Juliana M F Sallum, Richard F Spaide.   

Abstract

PURPOSE: To analyze the outer retinal layers using spectral domain optical coherence tomography (SD-OCT) in patients with cone-rod dystrophy.
METHODS: The diagnosis of cone-rod dystrophy was determined by primary cone involvement or concomitant loss of both cones and rods. Electroretinography showed implicit time shift at 30-Hz flicker response and prevalent decrease of photopic over scotopic responses. Using SD-OCT, the outer retina was retrospectively evaluated in 24 eyes of 12 patients with cone-rod dystrophy. From the innermost to the outermost, the four studied hyperreflective outer retinal bands were labeled Band 1, the external limiting membrane; Band 2, the ellipsoid zone; Band 3, the interdigitation zone between the cone outer segments and the apical processes of the retinal pigment epithelium; and Band 4, the retinal pigment epithelium complex.
RESULTS: The mean age of study patients was 30 years, and the median visual acuity was 20/30. A ring maculopathy appearance involving the fovea area was observed in all study eyes. There was an absence of interdigitation zone in the entire length of SD-OCT scan, including the foveal area, in all 24 study eyes. Outside the foveal area, the external limiting membrane and ellipsoid zone were intact in all study eyes. The intensity of the ellipsoid zone was decreased in the entire length of SD-OCT scan in all study eyes. Within the foveal area, there was loss of the external limiting membrane and ellipsoid zone in 20 (83%) and 22 eyes (92%), respectively. The retinal pigment epithelium complex was identified in all study eyes. None of the study eyes revealed cystoid macular edema.
CONCLUSION: SD-OCT scans demonstrated complete absence of the interdigitation zone in patients with cone-rod dystrophy. Consistent with the known histology of animal models of cone dystrophy, this finding may represent abnormal outer retinal morphology, including an absence of the outer segments themselves or a defective or absent interdigitation between the apical processes of the retinal pigment epithelium with the cone outer segments.

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Mesh:

Year:  2013        PMID: 23648999     DOI: 10.1097/IAE.0b013e31829234e6

Source DB:  PubMed          Journal:  Retina        ISSN: 0275-004X            Impact factor:   4.256


  12 in total

1.  RefMoB, a Reflectivity Feature Model-Based Automated Method for Measuring Four Outer Retinal Hyperreflective Bands in Optical Coherence Tomography.

Authors:  Douglas H Ross; Mark E Clark; Pooja Godara; Carrie Huisingh; Gerald McGwin; Cynthia Owsley; Katie M Litts; Richard F Spaide; Kenneth R Sloan; Christine A Curcio
Journal:  Invest Ophthalmol Vis Sci       Date:  2015-07       Impact factor: 4.799

2.  Multimodal imaging of foveal cavitation in retinal dystrophies.

Authors:  Maurizio Battaglia Parodi; Maria Vittoria Cicinelli; Pierluigi Iacono; Gianluigi Bolognesi; Francesco Bandello
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2016-08-05       Impact factor: 3.117

3.  Tomographic comparison of cone-rod and rod-cone retinal dystrophies.

Authors:  Emiko Inui; Akio Oishi; Maho Oishi; Ken Ogino; Yukiko Makiyama; Norimoto Gotoh; Masafumi Kurimoto; Nagahisa Yoshimura
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2014-01-18       Impact factor: 3.117

4.  The Properties of Outer Retinal Band Three Investigated With Adaptive-Optics Optical Coherence Tomography.

Authors:  Ravi S Jonnal; Iwona Gorczynska; Justin V Migacz; Mehdi Azimipour; Robert J Zawadzki; John S Werner
Journal:  Invest Ophthalmol Vis Sci       Date:  2017-09-01       Impact factor: 4.799

5.  Retinal morphology of patients with achromatopsia during early childhood: implications for gene therapy.

Authors:  Paul Yang; Keith V Michaels; Robert J Courtney; Yuquan Wen; Daniel A Greninger; Leah Reznick; Daniel J Karr; Lorri B Wilson; Richard G Weleber; Mark E Pennesi
Journal:  JAMA Ophthalmol       Date:  2014-07       Impact factor: 7.389

6.  Objective Analysis of Hyperreflective Outer Retinal Bands Imaged by Optical Coherence Tomography in Patients With Stargardt Disease.

Authors:  Jason C Park; Frederick T Collison; Gerald A Fishman; Rando Allikmets; Jana Zernant; Michelle Liu; J Jason McAnany
Journal:  Invest Ophthalmol Vis Sci       Date:  2015-07       Impact factor: 4.799

Review 7.  Retinal Diseases that Can Masquerade as Neurological Causes of Vision Loss.

Authors:  Tanyatuth Padungkiatsagul; Loh-Shan Leung; Heather E Moss
Journal:  Curr Neurol Neurosci Rep       Date:  2020-09-15       Impact factor: 5.081

8.  Management of Retinitis Pigmentosa via Platelet-Rich Plasma or Combination with Electromagnetic Stimulation: Retrospective Analysis of 1-Year Results.

Authors:  Umut Arslan; Emin Özmert
Journal:  Adv Ther       Date:  2020-04-18       Impact factor: 3.845

Review 9.  Photoreceptor inner segment ellipsoid band integrity on spectral domain optical coherence tomography.

Authors:  Sandeep Saxena; Khushboo Srivastav; Chui M Cheung; Joanne Yw Ng; Timothy Yy Lai
Journal:  Clin Ophthalmol       Date:  2014-12-09

10.  Peripheral Cone Dystrophy: Expanded Clinical Spectrum, Multimodal and Ultrawide-Field Imaging, and Genomic Analysis.

Authors:  Robert A Sisk; Robert B Hufnagel; Ailee Laham; Elizabeth S Wohler; Nara Sobreira; Zubair M Ahmed
Journal:  J Ophthalmol       Date:  2018-07-11       Impact factor: 1.909

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