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Glaucoma is the name given to a group of diseases that cause a particular type of optic neuropathy (i.e., optic nerve disease or abnormality) that results in visual field loss.
This paper address this challenge by exploring the room left from the fact this type of optic falls short from the theoretical limits of concentration, proposing a new solution enabling the design of larger troughs with higher concentration or larger acceptance angles, through the use of second stage concentration of a novel type.
One possible alternative is to design a different type of optic with the center of mass on the center of the tubular receiver, generating the possibility of it being fixed, thereby dispensing with flexible hosing or rotating joints, without penalizing its overall efficiency or even concentration.
Within patches, different amplitude signals can be observed based upon the type of optic flow presented.
Therefore the measured changes in the intrinsic signal were directly attributed to the type of optic flow and not to superfluous stimulus differences such as velocity distribution.
The amplitude of each pixel (I,J) has been converted in spiral space for which the color-coded angle, Θ(I,J), represents the type of optic flow.
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which can be related to various type of optic-continuous media mechanics processes.
To compare the initial visual field (VF) defect pattern and the spectral-domain optical coherence tomography (OCT) parameters and investigate the effects of distinct types of optic disc damage on the diagnostic performance of these OCT parameters in early glaucoma.
The resultant data set provides a description of types of optic nerve involvement and associated eye disease, patient demographics, presenting symptoms, methods of diagnosis, modes of treatment, and visual outcomes.
The time courses of the intrinsic signals demonstrate the differential effects of the types of optic flows.
Importantly, several other optic atrophies share pathophysiology with DOA and, therefore, the results from this study can be extended to other types of optic atrophy and neurodegenerative disease.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com