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   <ref-type name="Journal Article">17</ref-type>
   <contributors>
    <authors>
     <author>Jost B. Jonas</author>
     <author>Rahul A. Jonas</author>
     <author>Bikbov, M.M.</author>
     <author>Kazakbaeva, G.M.</author>
     <author>Li Dong</author>
     <author>Ya Xing Wang</author>
     <author>Songhomitra Panda-Jonas</author>
    </authors>
   </contributors>
   <titles>
    <title>Mechanism of myopic axial elongation related to Bruch´s membrane</title>
   </titles>
   <keywords>
    <keyword>myopia</keyword>
    <keyword>axial elongation</keyword>
    <keyword>myopic macular degeneration</keyword>
    <keyword>myopia-associated optic neuropathy</keyword>
    <keyword>bruch’s membrane</keyword>
    <keyword>Scopus</keyword>
    <keyword>Web of Science</keyword>
   </keywords>
   <dates>
    <year>2026</year>
    <pub-dates>
     <date>2026-06-15</date>
    </pub-dates>
   </dates>
   <doi>10.1016/j.apjo.2026.100329</doi>
   <journal>ASIA-PACIFIC JOURNAL OF OPHTHALMOLOGY</journal>
   <abstract>Purpose: The process of myopic axial elongation has not been fully uncovered yet. Here we propose a Bruch´s&#13;
membrane (BM)-related hypothesis und present anatomical and clinical findings supporting it.&#13;
Methods: The hypothesis is that ocular axial elongation beyond the age of 3 years occurs by a retina-triggered&#13;
annular segmental growth of BM in the posterior fundus midperiphery between approximately 10◦ to 80◦&#13;
anterior to the posterior pole, with a maximum growth at approximately 25◦ anterior to the posterior pole.&#13;
Results: The location of the posterior midperiphery is supported by anatomical findings of an axial length-related&#13;
thinning of retinal layers, sclera, and retinal pigment epithelium in the posterior midperiphery, the location of&#13;
pathologic changes at the anterior and posterior border of the BM growth zone (patchy atrophies, parapapillary&#13;
myopia beta zone and gamma zone, optic nerve head canal widening, cobble stones), and results of clinical trials&#13;
on myopia prevention in adolescents by circular progressive contact lenses or glasses. The notion of BM as&#13;
compared to sclera as the primary structure elongating the eye is supported by the axial length-related choroidal&#13;
thinning most marked at the posterior pole, the axial length-related increase in BM volume, the axial lengthrelated shift of BM-opening of the ONHC into the macular direction, the biomechanical properties of BM, and&#13;
by primarily not involving the retina, RPE and choriocapillaris in the foveal region.&#13;
Conclusions: If BM is the primary effector structure for axial elongation, future research may address the retinal&#13;
messenger molecule directing the RPE to locally produce BM.</abstract>
   <urls>
    <web-urls>
     <url>https://repo.bashgmu.ru/publication/5523</url>
    </web-urls>
    <pdf-urls>
     <url>https://repo.bashgmu.ru/files/5717</url>
    </pdf-urls>
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