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Carl Zeiss
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Ziemer USA Inc
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heidelberg engineering
spectral-domain optical coherence tomography imaging circumpapillary rnfl thickness, bruch’s membrane opening (bmo) area, and βppa microstructure ![]() Spectral Domain Optical Coherence Tomography Imaging Circumpapillary Rnfl Thickness, Bruch’s Membrane Opening (Bmo) Area, And βppa Microstructure, supplied by heidelberg engineering, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/rnfl+thickness/pmc07272281-98-14-30?v=heidelberg+engineering Average 90 stars, based on 1 article reviews
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heidelberg engineering
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GraphPad Software Inc
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Sony
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Rauscher GmbH
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Infiniti Medical LLC
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OPKO Health
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heidelberg engineering
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Image Search Results
Journal: BMC Ophthalmology
Article Title: Segmentation error in spectral domain optical coherence tomography measures of the retinal nerve fibre layer thickness in idiopathic intracranial hypertension
doi: 10.1186/s12886-017-0652-7
Figure Lengend Snippet: Demonstrates the typical infra-red (IR) images pre and post refinement of the automated segmentation. 1 a -1 c is a case of mild disc swelling: 1 a , IR image of optic nerve head; 1 b , Cross section of the peripapillary RNFL scan as autosegmented; 1 c , Cross section of the peripapillary RNFL scan following refinement of the segmentation manually. 1 d -1 f is a case of moderate to severe disc swelling: 1 d , IR image of optic nerve head; 1 e , Cross section of the peripapillary RNFL scan as autosegmented; 1 f , Cross section of the peripapillary RNFL scan following refinement of the segmentation manually
Article Snippet: SDOCT RNFL thickness
Techniques:
Journal: BMC Ophthalmology
Article Title: Segmentation error in spectral domain optical coherence tomography measures of the retinal nerve fibre layer thickness in idiopathic intracranial hypertension
doi: 10.1186/s12886-017-0652-7
Figure Lengend Snippet: This figure presents the IR image of the optic nerve head and the cross-sectional peripapillary circle scan for three subjects ( ab , cd , ef ). The figure demonstrates that in moderate to severe optic nerve head swelling the RNFL boundary as delineated by autosegmentation (blue line) is variable and not accurate. The average RNFL thickness values in these cases will be very inaccurate in these patients. In subject CD the height of the elevation of the optic nerve head is truncated by the image width and hence any values obtained from this scan are inaccurate. All the cases presented in these images were not manually segmented and were excluded from the study
Article Snippet: SDOCT RNFL thickness
Techniques:
Journal: Journal of glaucoma
Article Title: Deep-Layer Microvasculature Dropout in Pre-perimetric Glaucoma Patients
doi: 10.1097/IJG.0000000000001489
Figure Lengend Snippet: Comparison of structural and functional parameters of optic nerve head between preperimetric primary open-angle glaucoma patients according to presence of parapapillary deep-layer microvasculature dropout
Article Snippet: Spectral-Domain Optical Coherence Tomography Imaging Circumpapillary RNFL thickness, Bruch’s membrane opening (BMO) area, and
Techniques: Comparison, Functional Assay, Standard Deviation