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February 1, 1999Journal of Ocular Pharmacology and Therapeutics286 citations

Effects of Different Concentrations of Atropine on Controlling Myopia in Myopic Children

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YSYung‐Feng ShihCCCHIEN-HSIUNG CHENACA C Chou

Key Points

  • To evaluate whether lower concentrations of atropine eye drops (0.5%, 0.25%, and 0.1%) effectively control myopia progression while potentially minimizing adverse effects.
  • Assessed 186 children aged 6 to 13 years treated nightly for up to 2 years with 0.5%, 0.25%, or 0.1% atropine eye drops or a control treatment.
  • Mean myopic progression was 0.04 ± 0.63 diopters/year (D/Y) with 0.5% atropine, 0.45 ± 0.55 D/Y with 0.25% atropine, and 0.47 ± 0.91 D/Y with 0.1% atropine, all significantly lower than controls at 1.06 ± 0.61 D/Y (p < 0.01).
  • No myopic progression occurred in 61% of the 0.5% group, 49% of the 0.25% group, 42% of the 0.1% group, and 8% of the control group.
  • Rapid progression (> -1.0 D/Y) was observed in 4% of the 0.5% group, 17% of the 0.25% group, 33% of the 0.1% group, and 44% of controls.

Abstract

Although 1% atropine effectively slows myopia progression, it is associated with adverse effects, including photophobia, blurred near vision, and poor compliance. We investigated whether lower doses of atropine would control myopia progression. One hundred and eighty-six children, from 6 to 13 years of age, were treated each night with different concentrations of atropine eye drops or a control treatment for up to 2 years. The mean myopic progression in each of the groups was 0.04 +/-0.63 diopter per year (D/Y) in the 0.5% atropine group, 0.45+/-0.55 D/Y in the 0.25% atropine group, and 0.47+/-0.91 D/Y in the 0.1% atropine group. All atropine groups showed significantly less myopic progression than the control group (1.06+/-0.61 D/Y) (p-1.0 D/Y). In contrast, only 8% of the control group showed no myopic progression and 44% had fast myopic progression. These results suggest that all three concentrations of atropine had significant effects on controlling myopia; however, treatment with 0.5% atropine was the most effective.

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Cite This Study

Shih et al. (1999) studied this question.

synapsesocial.com/papers/6a1306e5257f24f1de9eb2dchttps://doi.org/10.1089/jop.1999.15.85
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Attempts to Reduce the Rate of Increase of Myopia in Young People—A Critical Literature Review1982 · 53 citations
  2. 2The Effectiveness of 0.5% Atropine in Controlling High Myopia in Children1997 · 72 citations
  3. 3The effect of atropine on myopia.1971 · 74 citations
  4. 4Structural and biochemical changes in the sclera of experimentally myopic eyes1991 · 30 citations
  5. 5The Regulation of the Scleral Growth Associated with Deprivation Myopia in Chicks1997 · 5 citations