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Titlebook: Mathematical Models of the Dynamics of the Human Eye; Richard Collins,Terry J. Werff Book 1980 Springer-Verlag Berlin Heidelberg 1980 Auge

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Richard Collins,Terry J. van der Werffce of neural networks in different areas of application. In addition, there are papers that present theory and practice of optimization and evolutionary algorithms in different areas of application. Finally, th978-3-031-08268-9978-3-031-08266-5Series ISSN 1860-949X Series E-ISSN 1860-9503
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Book 1980g mechanisms of glaucoma is hindered by the fact that elevated intraocular pressure, like a runny nose, is but a symptom which may have a variety of causes. Only by turning to the initial pathology can one hope to understand this important class of medical problems.
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Book 1980mental points of view. For the most part, workers have attempted to shed light on the complex set of conditions known by the general term glaucoma. These conditions are characterised by an increase in intraocular pressure sufficient to cause de­ generation of the optic disc and concomitant defects i
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Neural Control of the Intraocular Pressure,ent of glaucoma with varying degrees of success. Such drugs may act either directly on the eye or secondarily through altered neural control. The neural pathways controlling the intraocular pressure are largely unknown, and one must assume them in a preliminary study.
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Relation of Ocular Dynamics to the Cerebral Circulation, in the cerebral circulation have traditionally been both difficult and hazardous, although recent advances in transcutaneous Doppler flowmeters are rapidly reversing this situation. Pressure measurements have generally been more feasible; namely, in the eye and the arm.
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Richard Collins,Terry J. van der Werffe-Cycle of animal species, which consists of several stages: birth, growth, reproduction, and death. As in nature, we intend to execute all these stages in parallel and asynchronously on a population that evolves constantly. From the ground up, we designed the algorithm as a cloud-native solution us
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Richard Collins,Terry J. van der Werffr and prey rate regime of marine ecosystems, called the fuzzy marine predators algorithm (FMPA). This is presented as an improved variant of the marine predators algorithm and its utility in control applications. Its novelty is presented in the application of Type-1 and Interval Type-2 Fuzzy Logic s
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Richard Collins,Terry J. van der Werffave today which makes it possible for large datasets of information like images to be widely spread and accessible to more users than ever. This is also because of the resurgence of popularity for neural networks with the deep architectures like Convolutional Neural Networks (CNN) specialized on thi
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