| Literature DB >> 31053109 |
Li Dong1, Xu Han Shi1, Yi Kun Kang2, Wen Bin Wei3, Ya Xing Wang4, Jost B Jonas4,5.
Abstract
BACKGROUND: Lens-induced myopization in guinea pigs has been used as model for the process of myopization in humans. It has not been explored yet whether the change in globe shape in eyes undergoing myopization is similar in experimental myopia in guinea pigs and in clinical myopia in patients.Entities:
Keywords: Axial length; Eye diameter; Eye size; Globe diameter; High myopia; Lens-induced axial elongation; Myopia; Ocular elongation; Refractive error
Mesh:
Year: 2019 PMID: 31053109 PMCID: PMC6499974 DOI: 10.1186/s12886-019-1109-y
Source DB: PubMed Journal: BMC Ophthalmol ISSN: 1471-2415 Impact factor: 2.209
Fig. 1Scattergram showing the correlation between the vertical globe diameter and horizontal globe diameter in young guinea pigs undergoing unilateral lens-induced myopization in the right eyes (study group), with the left eyes remaining untouched (control group); equation of the regression line: Horizontal Diameter (mm) = 0.94 x Vertical Diameter (mm) + 0.73; regression coefficient r2 = 0.54; P < 0.001. Blue circles: Control group; Red circles: Myopia group
Fig. 2Scattergram showing the correlation between the sagittal globe diameter and vertical globe diameter in young guinea pigs undergoing unilateral lens-induced myopization in the right eyes (study group), with the left eyes remaining untouched (control group); equation of the regression line: Vertical Diameter (mm) = 0.55 x Sagittal Diameter (mm) + 4.08; regression coefficient r2 = 0.48; P < 0.001. Blue circles: Control group; Red circles: Myopia group
Fig. 3Scattergram showing the correlation between the sagittal globe diameter and horizontal globe diameter in young guinea pigs undergoing unilateral lens-induced myopization in the right eyes (study group), with the left eyes remaining untouched (control group); equation of the regression line: Vertical Diameter (mm) = 0.64 x Sagittal Diameter (mm) + 3.52; regression coefficient r2 = 0.38; P < 0.001. Blue circles: Control group; Red circles: Myopia group
Fig. 4Scattergram showing the correlation between the sagittal globe diameter and the ratio of the horizontal to sagittal globe diameter in young guinea pigs undergoing unilateral lens-induced myopization in the right eyes (study group), with the left eyes remaining untouched (control group); equation of the regression line: Ratio of Horizontal to Sagittal Globe Diameter = − 0.05 x Sagittal Diameter (mm) + 1.43; regression coefficient r2 = 0.18; P < 0.001. Blue circles: Control group; Red circles: Myopia group
Fig. 5Scattergram showing the correlation between the sagittal globe diameter and the ratio of the vertical to sagittal globe diameter in young guinea pigs undergoing unilateral lens-induced myopization in the right eyes (study group), with the left eyes remaining untouched (control group); equation of the regression line: Ratio of Vertical to Sagittal Globe Diameter = − 0.05 x Sagittal Diameter (mm) + 1.47; regression coefficient r2 = 0.37; P < 0.001. Blue circles: Control group; Red circles: Myopia group