Refractive States of Eyes and Ocular Components in Maltese Dogs and Domestic Shorthair Cats

碩士 === 國立中興大學 === 獸醫學系暨研究所 === 104 === Ametropia, including myopia (near-sightedness) and hyperopia (far-sightedness), due to refractive error is the most common ocular disorders among humans. Now, it had been found occurring naturally not only in human but also in various animal species. The preval...

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Main Authors: Yu-Ying Wang, 王郁盈
Other Authors: Shiun-Long Lin
Format: Others
Language:zh-TW
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/47428268481087980942
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spelling ndltd-TW-104NCHU55410052017-01-06T04:19:41Z http://ndltd.ncl.edu.tw/handle/47428268481087980942 Refractive States of Eyes and Ocular Components in Maltese Dogs and Domestic Shorthair Cats 馬爾濟斯犬及短毛家貓眼睛屈光狀態與眼內結構之關係 Yu-Ying Wang 王郁盈 碩士 國立中興大學 獸醫學系暨研究所 104 Ametropia, including myopia (near-sightedness) and hyperopia (far-sightedness), due to refractive error is the most common ocular disorders among humans. Now, it had been found occurring naturally not only in human but also in various animal species. The prevalence of ametropia in dogs is breed dependent. Similarly, domestic shorthair (DSH) cats were significantly more likely to be myopic than were domestic mediumhair or domestic longhair cats. Some studies had been done to investigate the probable cause of the ametropia in some breeds of dogs. In the present study, axial length(AL), corneal radius of curvature(CR), and the refractive error of both eyes were determined by use of A-scan ultrasonography and auto kerato-refractometer in maltese dogs and DSH cats. The refractive power of the crystalline lens of each eye was calculated by using the Bennett’s formula1, and A and B-constants were calculated based on the schematic eye models of dog and cat proposed by O’Keefe and Coile. The average spherical equivalent refractive errors(SE) for maltese dogs, juvenile DSH cats and adult DSH cats were +3.07 ± 0.35 D (hyperopia), -1.24 ± 1.12 D (myopia) and -0.15 ± 1.45 D (Emmetropia). The juvenile cats were more myopic than adult cats. Mean corneal curvature of maltese dogs, juvenile cats and adult cats were 43.51 ± 2.52 D, 38.72 ± 1.25 D and 37.83 ± 1.12 D, respectively. There was a high prevalence of against-the-rule astigmatism in both species. In the analysis of refractive errors, there was a significant negative correlation between SE and vitreous chamber depth in maltese dogs and DSH cats. Otherwise, there was also a significant positive correlation between SE and either corneal power or AL/CR ratio in maltese dogs while there was a significant negative correlation between SE and AL/CR in DSH cats. In conclusion, the cause of the myopia in DSH cats appeared to be from vitreous chamber elongation while the cause of the hyperopia in maltese dogs might be associated with shorter vitreous chamber. Maltese dogs and DSH cats may be promising models for the study of ametropia in humans. Shiun-Long Lin 林荀龍 2016 學位論文 ; thesis 81 zh-TW
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language zh-TW
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description 碩士 === 國立中興大學 === 獸醫學系暨研究所 === 104 === Ametropia, including myopia (near-sightedness) and hyperopia (far-sightedness), due to refractive error is the most common ocular disorders among humans. Now, it had been found occurring naturally not only in human but also in various animal species. The prevalence of ametropia in dogs is breed dependent. Similarly, domestic shorthair (DSH) cats were significantly more likely to be myopic than were domestic mediumhair or domestic longhair cats. Some studies had been done to investigate the probable cause of the ametropia in some breeds of dogs. In the present study, axial length(AL), corneal radius of curvature(CR), and the refractive error of both eyes were determined by use of A-scan ultrasonography and auto kerato-refractometer in maltese dogs and DSH cats. The refractive power of the crystalline lens of each eye was calculated by using the Bennett’s formula1, and A and B-constants were calculated based on the schematic eye models of dog and cat proposed by O’Keefe and Coile. The average spherical equivalent refractive errors(SE) for maltese dogs, juvenile DSH cats and adult DSH cats were +3.07 ± 0.35 D (hyperopia), -1.24 ± 1.12 D (myopia) and -0.15 ± 1.45 D (Emmetropia). The juvenile cats were more myopic than adult cats. Mean corneal curvature of maltese dogs, juvenile cats and adult cats were 43.51 ± 2.52 D, 38.72 ± 1.25 D and 37.83 ± 1.12 D, respectively. There was a high prevalence of against-the-rule astigmatism in both species. In the analysis of refractive errors, there was a significant negative correlation between SE and vitreous chamber depth in maltese dogs and DSH cats. Otherwise, there was also a significant positive correlation between SE and either corneal power or AL/CR ratio in maltese dogs while there was a significant negative correlation between SE and AL/CR in DSH cats. In conclusion, the cause of the myopia in DSH cats appeared to be from vitreous chamber elongation while the cause of the hyperopia in maltese dogs might be associated with shorter vitreous chamber. Maltese dogs and DSH cats may be promising models for the study of ametropia in humans.
author2 Shiun-Long Lin
author_facet Shiun-Long Lin
Yu-Ying Wang
王郁盈
author Yu-Ying Wang
王郁盈
spellingShingle Yu-Ying Wang
王郁盈
Refractive States of Eyes and Ocular Components in Maltese Dogs and Domestic Shorthair Cats
author_sort Yu-Ying Wang
title Refractive States of Eyes and Ocular Components in Maltese Dogs and Domestic Shorthair Cats
title_short Refractive States of Eyes and Ocular Components in Maltese Dogs and Domestic Shorthair Cats
title_full Refractive States of Eyes and Ocular Components in Maltese Dogs and Domestic Shorthair Cats
title_fullStr Refractive States of Eyes and Ocular Components in Maltese Dogs and Domestic Shorthair Cats
title_full_unstemmed Refractive States of Eyes and Ocular Components in Maltese Dogs and Domestic Shorthair Cats
title_sort refractive states of eyes and ocular components in maltese dogs and domestic shorthair cats
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/47428268481087980942
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