Enhancement of a mechanical eye model setup for IOL testing

but.defenceStudent Ferdinand Dvořák úspěšně obhájil svou diplomovou práci a prokázal znalosti v oblasti teorie v rámci odborné rozpravy.cs
but.jazykangličtina (English)
but.programBioengineeringcs
but.resultpráce byla úspěšně obhájenacs
dc.contributor.advisorBSc, Lukas Traxler,en
dc.contributor.authorDvořák, Ferdinanden
dc.contributor.refereeBSc, Andrea Balzen
dc.date.accessioned2023-01-05T07:54:21Z
dc.date.available2023-01-05T07:54:21Z
dc.date.created2022cs
dc.description.abstractCataract is the most common cause of blindness. The only way to treat it is the cataract surgery during which the affected crystalline lens is destroyed and removed from the eye and replaced with an implantable intraocular lens. After the cataract surgery, a displacement of the intraocular lens from its aligned position happens in some cases. The lenses may be of several designs and their properties are subject to regulatory standards. These standards, however, do not include testing of the postoperative displacement of the lens. For this purpose, an optomechanical eye model setup was previously developed to enable measuring of the wavefront aberrations of the intraocular lenses. As this setup does not perfectly mimic the physiology of the human eye and the manipulation with it may sometimes introduce unwanted errors, the objective of this thesis is to fight the above-mentioned imperfections and develop a new, enhanced eye model setup which will address these.en
dc.description.abstractCataract is the most common cause of blindness. The only way to treat it is the cataract surgery during which the affected crystalline lens is destroyed and removed from the eye and replaced with an implantable intraocular lens. After the cataract surgery, a displacement of the intraocular lens from its aligned position happens in some cases. The lenses may be of several designs and their properties are subject to regulatory standards. These standards, however, do not include testing of the postoperative displacement of the lens. For this purpose, an optomechanical eye model setup was previously developed to enable measuring of the wavefront aberrations of the intraocular lenses. As this setup does not perfectly mimic the physiology of the human eye and the manipulation with it may sometimes introduce unwanted errors, the objective of this thesis is to fight the above-mentioned imperfections and develop a new, enhanced eye model setup which will address these.cs
dc.description.markBcs
dc.identifier.citationDVOŘÁK, F. Enhancement of a mechanical eye model setup for IOL testing [online]. Brno: Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií. 2022.cs
dc.identifier.other137980cs
dc.identifier.urihttp://hdl.handle.net/11012/208731
dc.language.isoencs
dc.publisherVysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologiícs
dc.rightsStandardní licenční smlouva - přístup k plnému textu bez omezenícs
dc.subjecthuman eyeen
dc.subjecteye modelen
dc.subjectcataracten
dc.subjectintraocular lensen
dc.subjectretinaen
dc.subjecthuman eyecs
dc.subjecteye modelcs
dc.subjectcataractcs
dc.subjectintraocular lenscs
dc.subjectretinacs
dc.titleEnhancement of a mechanical eye model setup for IOL testingen
dc.title.alternativeEnhancement of a mechanical eye model setup for IOL testingcs
dc.typeTextcs
dc.type.drivermasterThesisen
dc.type.evskpdiplomová prácecs
dcterms.dateAccepted2022-11-09cs
dcterms.modified2023-01-04-14:22:20cs
eprints.affiliatedInstitution.facultyFakulta elektrotechniky a komunikačních technologiícs
sync.item.dbid137980en
sync.item.dbtypeZPen
sync.item.insts2023.01.05 08:54:21en
sync.item.modts2023.01.05 08:13:19en
thesis.disciplinebez specializacecs
thesis.grantorVysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií. Ústav biomedicínského inženýrstvícs
thesis.levelInženýrskýcs
thesis.nameIng.cs
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