مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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Cites:

1

Information Journal Paper

Title

Corneal hysteresis and corneal resistance factor in pellucid marginal degeneration

Pages

  42-47

Abstract

 Purpose: To evaluate and compare Corneal hysteresis (CH) and Corneal resistance factor (CRF) in Pellucid marginal degeneration (PMD), Keratoconus (KCN), and normal eyes using the Ocular Response Analyzer (ORA). Methods: In this retrospective study, corneal biomechanical parameters were measured in patients with PMD (n ¼ 102) and KCN (n ¼ 202) and normal subjects (n ¼ 208) using the ORA. Data, including full patient history as well as the results of refraction, slit-lamp biomicroscopy, Pentacam HR (Oculus), and ORA (Reichert; Buffalo, New York, USA), were collected from medical records. Also, the data of only one eye per individual were selected for the analysis. The inclusion criteria for PMD and KCN groups were a reliable diagnosis of these ectatic disorders based on the clinical and corneal tomographic findings. CH, CRF, CHeCRF, intraocular pressure (IOP) measurements were assessed for each subject. Data were analyzed with SPSS and MedCalc using the ANOVA, Pearson Correlation, and receiver operating characteristic (ROC) curve analysis. Results: The mean CH was 8. 91 mmHg ± 1. 05 [standard deviation (SD)], 8. 43 ± 0. 78, and 10. 89 ± 1. 08 in the PMD, KCN, and normal group, respectively. Also, the mean CRF was 8. 21 ± 1. 35, 7. 19 ± 1. 11, and 10. 69 ± 1. 41 in the PMD, KCN, and normal group, respectively. ANOVA showed differences in the mean CH, CRF, and CHeCRF between three groups (P < 0. 001). Also, ROC curve analysis showed the cut-off points  9. 5,  9. 5, and >1. 3 mmHg for CH, CRF, and CHeCRF in the PMD group, respectively. For biomechanical parameters in PMD eyes, CRF had the highest sensitivity (75. 49%) while the greatest area under the ROC curve (AUC) was seen for CH (0. 903). Moreover, central corneal thickness (CCT) showed no correlation with CH (P ¼ 0. 30, r ¼  0. 104) or CRF (P ¼ 0. 75, r ¼ 0. 033) in the PMD group. Conclusions: This study presented the values of Corneal biomechanics for PMD using the ORA. The results of the ORAwere markedly different between PMD, KCN, and normal eyes.

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    APA: Copy

    Sedaghat, Mohamad Reza, Ostadi Moghadam, Hadi, JABBARVAND, MAHMOUD, Askarizadeh, Farshad, MOMENI MOGHADDAM, HAMED, & Narooie Noori, Foroozan. (2018). Corneal hysteresis and corneal resistance factor in pellucid marginal degeneration. JOURNAL OF CURRENT OPHTHALMOLOGY, 30(1), 42-47. SID. https://sid.ir/paper/748865/en

    Vancouver: Copy

    Sedaghat Mohamad Reza, Ostadi Moghadam Hadi, JABBARVAND MAHMOUD, Askarizadeh Farshad, MOMENI MOGHADDAM HAMED, Narooie Noori Foroozan. Corneal hysteresis and corneal resistance factor in pellucid marginal degeneration. JOURNAL OF CURRENT OPHTHALMOLOGY[Internet]. 2018;30(1):42-47. Available from: https://sid.ir/paper/748865/en

    IEEE: Copy

    Mohamad Reza Sedaghat, Hadi Ostadi Moghadam, MAHMOUD JABBARVAND, Farshad Askarizadeh, HAMED MOMENI MOGHADDAM, and Foroozan Narooie Noori, “Corneal hysteresis and corneal resistance factor in pellucid marginal degeneration,” JOURNAL OF CURRENT OPHTHALMOLOGY, vol. 30, no. 1, pp. 42–47, 2018, [Online]. Available: https://sid.ir/paper/748865/en

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