Literature DB >> 26042228

Progressive Myopia and Lid Suture Myopia are Explained by the Same Feedback Process: a Mathematical Model of Myopia.

Antonio Medina1, Peter R Greene2.   

Abstract

OBJECTIVE: Progressive myopia in humans and lid-sutured myopia in primates have been considered to be different processes. This report seeks to establish the connection between progressive myopia in humans and lid suture myopia in macaque monkeys.
METHODS: We followed the axial length of 4 lid-sutured macaque monkeys over an 18 month period. Their axial length is directly related to myopia. We also studied the myopia progression in corrected human subjects. Macaques and humans exhibit a linear time course of myopia progression when lid-sutured or corrected with lenses, respectively.
RESULTS: A linear progression is observed in lid-sutured eyes of four macaques, r = 0.94, p < 0.05. Human progressive myopia and lid-suture myopia can be modeled by the same feedback process. In both cases the functional equivalent is the opening of the feedback loop.
CONCLUSIONS: The open loop feedback process predicts a linear progression of myopia. This prediction was confirmed in human subjects and it is now confirmed in our macaque subjects. This process also explains the very rapid rate of myopia progression of lid sutured eyes.

Entities:  

Keywords:  Emmetropia; Laplace transform; emmetropization; feedback; myopia; ultrasound

Year:  2015        PMID: 26042228      PMCID: PMC4447093     

Source DB:  PubMed          Journal:  J Nat Sci        ISSN: 2377-2700


  16 in total

1.  A retrospective study of myopia progression in adult contact lens wearers.

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2.  Prediction of Juvenile-Onset Myopia.

Authors:  Karla Zadnik; Loraine T Sinnott; Susan A Cotter; Lisa A Jones-Jordan; Robert N Kleinstein; Ruth E Manny; J Daniel Twelker; Donald O Mutti
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3.  A model for emmetropization. The effect of corrective lenses.

Authors:  A Medina
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4.  Time course of rhesus lid-suture myopia.

Authors:  P R Greene; D L Guyton
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5.  Emmetropization as a first-order feedback system.

Authors:  A Medina; E Fariza
Journal:  Vision Res       Date:  1993-01       Impact factor: 1.886

Review 6.  Effect of spectacle correction on the progression of myopia in children--a literature review.

Authors:  D A Goss
Journal:  J Am Optom Assoc       Date:  1994-02

7.  The progression of corrected myopia.

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8.  Myopia stabilization and associated factors among participants in the Correction of Myopia Evaluation Trial (COMET).

Authors: 
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9.  An animal model of myopia.

Authors:  E Raviola; T N Wiesel
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10.  Visual disability, visual function, and myopia among rural chinese secondary school children: the Xichang Pediatric Refractive Error Study (X-PRES)--report 1.

Authors:  Nathan Congdon; Yunfei Wang; Yue Song; Kai Choi; Mingzhi Zhang; Zhongxia Zhou; Zhenling Xie; Liping Li; Xueyu Liu; Abhishek Sharma; Bin Wu; Dennis S C Lam
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2.  Growth curves of myopia-related parameters to clinically monitor the refractive development in Chinese schoolchildren.

Authors:  Pablo Sanz Diez; Li-Hua Yang; Mei-Xia Lu; Siegfried Wahl; Arne Ohlendorf
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3.  Juvenile Myopia. Predicting the Progression Rate.

Authors:  Peter R Greene; Antonio Medina
Journal:  Mathews J Ophthalmol       Date:  2017-01-13

4.  Various cross-linking methods inhibit the collagenase I degradation of rabbit scleral tissue.

Authors:  Konstantin Krasselt; Cornelius Frommelt; Robert Brunner; Franziska Georgia Rauscher; Mike Francke; Nicole Körber
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