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  <Article>
    <Journal>
      <PublisherName>Springer Science and Business Media LLC</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0721-832X</Issn>
      <Volume/>
      <Issue/>
      <PubDate PubStatus="ppublish">
        <Year>2026</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Dissociation between globe shape-induced rectus muscle pulley displacement and abduction limitation in patients aged 40 years and older with high myopic strabismus</ArticleTitle>
    <FirstPage LZero="delete"/>
    <LastPage/>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Lino Eye Clinic</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumiko</FirstName>
        <LastName>Kishimoto</LastName>
        <Affiliation>Division of Ophthalmology, Ibara City Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Lino Eye Clinic</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Shin</FirstName>
        <LastName>Morisawa</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
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    <Abstract>Purpose We hypothesized that high myopia (HM)-induced globe deformation displaces rectus muscle (RM) pulleys, contributing to mild ocular motility restriction. This study investigated the effects of globe shape on RM pulley positions in older Japanese patients with acquired strabismus (AS) and mild motility restriction—defined as the ability to abduct both eyes beyond the midline.&lt;br&gt;
Methods In this retrospective case series, 28 patients (mean age ± standard deviation: 61.2 ± 9.0 years) with adult-onset AS were included: 6 patients with (LAB group) and 22 patients without abduction limitation (NLAB group). In each subject, the eye with the longer axial length (AL ≥ 26 mm), measured using an AL measurement apparatus, was analyzed using magnetic resonance imaging (MRI). RM pulley positions relative to the globe center and equatorial diameter (ED) were measured; the ED-to-AL ratio (EAR) was calculated. We compared these parameters between groups and analyzed correlations of globe-shape factors (EAR, AL, and ED) with pulley positions and age.&lt;br&gt;
Results No significant differences in EAR, AL, ED, or pulley positions were detected between LAB and NLAB groups, possibly owing to the limited sample size and group imbalance, in the analyzed eyes. However, as EAR decreased (prolate deformation), the superior rectus (SR) pulley (r = 0.68, P &lt; 0.01) and inferior rectus (IR) pulley (r = 0.40, P = 0.03) significantly displaced nasally. AL (r = -0.52, P &lt; 0.01) correlated with the horizontal SR pulley position. Furthermore, age significantly correlated with AL (r = 0.45, P = 0.02) and decrease in EAR (r = -0.41, P = 0.03).&lt;br&gt;
Conclusions In older Japanese patients with HM and AS, prolate globe deformation was associated with age and significantly correlated with SR and IR pulley positions. While the direct relationship between these structural changes and the clinical degree of mild abduction limitation requires further investigation in larger cohorts, EAR sensitively reflected age-related morphological shifts; thus, when used in conjunction with AL, EAR may represent a readily measurable MRI-based parameter associated with restrictive motility tendencies in strabismus with high myopia.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
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      <Object Type="keyword">
        <Param Name="value">Heavy eye syndrome</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">High myopia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Magnetic resonance imaging</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Prolate deformation</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Rectus muscle pulley</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Strabismus</Param>
      </Object>
    </ObjectList>
    <ReferenceList/>
  </Article>
  <Article>
    <Journal>
      <PublisherName>Springer Science and Business Media LLC</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0721-832X</Issn>
      <Volume/>
      <Issue/>
      <PubDate PubStatus="ppublish">
        <Year>2026</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Age-related changes in the orbital pulley array of older Japanese adults with acquired exotropia</ArticleTitle>
    <FirstPage LZero="delete"/>
    <LastPage/>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology,, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Lino Eye Clinic</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumiko</FirstName>
        <LastName>Kishimoto</LastName>
        <Affiliation>Division of Ophthalmology, Ibara City Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Lino Eye Clinic</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Shin</FirstName>
        <LastName>Morisawa</LastName>
        <Affiliation>Department of Ophthalmology,, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology,, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType/>
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      <ArticleId IdType="doi"/>
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    <Abstract>Purpose: To evaluate age-related changes in the orbital pulley array using magnetic resonance imaging (MRI) in older Japanese adults with acquired exotropia (XT) compared with young healthy participants (YHP).&lt;br&gt;
Methods: In this retrospective cross-sectional case series, MRI images of 30 eyes from fifteen patients (age ≥ 60 years) with distance XT and no high myopia were compared with those of 14 eyes from seven YHP. Rectus muscle (RM) pulley positions relative to the globe center were assessed. The lateral rectus muscle–superior rectus (LR–SR) band was evaluated for rupture.&lt;br&gt;
Results: Mean age of patients with XT was 73.7 ± 5.5 years. Compared with YHP, patients with XT showed significant inferior displacement of the lateral rectus (LR) pulley (–3.6 ± 1.2 mm vs. − 2.0 ± 1.1 mm, p &lt; 0.01) and temporal displacement of the superior rectus (SR) pulley (–0.4 ± 1.2 mm vs. − 1.6 ± 0.8 mm, p &lt; 0.01). No significant differences were observed in medial rectus or inferior rectus pulley positions. Inferior LR pulley displacement correlated with inferior SR pulley displacement (r = 0.41, p = 0.03), whereas no significant relationship was observed between LR pulley position and MR or IR pulley position. Rupture of the LR–SR band was observed in 24 orbits (80.0%).&lt;br&gt;
Conclusion: Older Japanese adults with XT exhibit localized pulley displacement and LR–SR band rupture. These structural changes differ from the global sagging observed in sagging eye syndrome and may contribute to the pathogenesis of acquired exotropia in older adults.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
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  </Article>
  <Article>
    <Journal>
      <PublisherName>Okayama University Medical School</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0386-300X</Issn>
      <Volume>79</Volume>
      <Issue>5</Issue>
      <PubDate PubStatus="ppublish">
        <Year>2025</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Comparison of Extraocular Muscles in Patients with Exotropia and Healthy Participants Using Anterior Segment Optical Coherence Tomography</ArticleTitle>
    <FirstPage LZero="delete">353</FirstPage>
    <LastPage>358</LastPage>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Chihara</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Shin</FirstName>
        <LastName>Morisawa</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Keisuke</FirstName>
        <LastName>Kanenaga</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType>Original Article</PublicationType>
    <ArticleIdList>
      <ArticleId IdType="doi">10.18926/AMO/69436</ArticleId>
    </ArticleIdList>
    <Abstract>To analyze and characterize the medial and lateral rectus muscles in patients with exotropia using anterior segment optical coherence tomography (AS-OCT). This study included 24 patients with exotropia (48 eyes) and 25 healthy individuals (50 eyes). Anterior segment optical coherence tomography was used to construct the en face images. The anterior chamber angle to the extraocular muscle insertion distance, muscle width, and muscle fiber angle from the muscle insertion sites were compared between the exotropia and the control groups. The correlation between these parameters and age or angle of deviation was evaluated. The mean ages were 13.2±4.1 years for the exotropia group and 17.6±7.2 years for the control group. The lateral rectus angle was significantly more inwardly rotated in the exotropia group than in the control group (1.6±6.3°, −1.4±4.0°, p=0.014). With increasing angle of deviation, the width of the lateral rectus increased (p=0.002). Our results indicate that the lateral rectus angle is significantly more inwardly rotated in patients with exotropia. These findings should contribute to a deeper understanding of the extraocular muscles in patients with this condition.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
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      <Object Type="keyword">
        <Param Name="value">exotropia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">AS-OCT</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">anterior chamber angle to extraocular muscle insertion distance</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">muscle width</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">muscle fiber angle</Param>
      </Object>
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    <ReferenceList/>
  </Article>
  <Article>
    <Journal>
      <PublisherName>Springer Science and Business Media LLC</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0021-5155</Issn>
      <Volume>69</Volume>
      <Issue>1</Issue>
      <PubDate PubStatus="ppublish">
        <Year>2025</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Relationships between tilt angles of rectus muscles and positions of rectus muscle pulleys in patients with sagging eye syndrome</ArticleTitle>
    <FirstPage LZero="delete">1</FirstPage>
    <LastPage>9</LastPage>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumiko</FirstName>
        <LastName>Kishimoto</LastName>
        <Affiliation>Division of Ophthalmology, Ibara City Hospital, Ibara City</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Shin</FirstName>
        <LastName>Morisawa</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType/>
    <ArticleIdList>
      <ArticleId IdType="doi"/>
    </ArticleIdList>
    <Abstract>Purpose To examine the relationship between the rectus muscle (RM) angle and RM pulley displacement in patients with sagging eye syndrome (SES) without myopia.&lt;br&gt;
Study design Retrospective cross-sectional case series.&lt;br&gt;
Methods High-resolution quasi-coronal magnetic resonance imaging (MRI) data from 20 orbits of ten Japanese patients with SES but without high myopia were analyzed. The patients had no abduction deficiency. The RM angles were measured between the major axes of the horizontal and vertical RMs relative to the vertical and horizontal planes, respectively. The positions of the RM pulleys relative to the center of the globe were analyzed as previously described.&lt;br&gt;
Results The mean age of the patients was 75.8 ± 4.5 years (standard deviation). The average axial length was 23.6 ± 0.6 mm. The lateral rectus (LR) muscle angle (22 ± 6°) had moderate negative correlations with the inferior displacement of the inferior rectus (IR), superior rectus (SR), and LR pulleys (r =– 0.63,– 0.45, and– 0.45, respectively); however, no change was observed in the medial rectus (MR) pulley (r =– 0.41). No correlations were found between the angles of the SR (4 ± 8°), IR (– 13 ± 8°), and MR (– 1 ± 6°) muscles and the positions of the RM pulleys.&lt;br&gt;
Conclusion Given the correlation between increased LR muscle angle and inferior displacement of adjacent RM pulleys in SES, the LR muscle angle may serve as a diagnostic clue, even when inferior displacement is not identifiable on MRI. Further confirmation in larger studies is warranted.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
    <ObjectList>
      <Object Type="keyword">
        <Param Name="value">Orbital pulley</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Sagging eye syndrome</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Distance esotropia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Cyclovertical strabismus</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Aging</Param>
      </Object>
    </ObjectList>
    <ReferenceList/>
  </Article>
  <Article>
    <Journal>
      <PublisherName>Springer Science and Business Media LLC</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0021-5155</Issn>
      <Volume>68</Volume>
      <Issue>6</Issue>
      <PubDate PubStatus="ppublish">
        <Year>2024</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Relationships among eye dimensions in magnetic resonance images by sex, age, and strabismus type in Japanese patients with acquired strabismus and high myopia</ArticleTitle>
    <FirstPage LZero="delete">641</FirstPage>
    <LastPage>650</LastPage>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumiko</FirstName>
        <LastName>Kishimoto</LastName>
        <Affiliation>Division of Ophthalmology, Ibara City Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Takehiro</FirstName>
        <LastName>Shimizu</LastName>
        <Affiliation>Division of Ophthalmology, Okayama City Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Hiroya</FirstName>
        <LastName>Kindo</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Shin</FirstName>
        <LastName>Morisawa</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType/>
    <ArticleIdList>
      <ArticleId IdType="doi"/>
    </ArticleIdList>
    <Abstract>Purpose To investigate the relationships among eye dimensions in magnetic resonance imaging (MRI) scans by sex, age, and strabismus type in Japanese patients with acquired strabismus and high myopia.&lt;br&gt;
Study design Retrospective clinical case series.&lt;br&gt;
Methods We included 58 eyes of 29 patients with acquired strabismus and high myopia (mean age ± standard deviation: 60.2 ± 14.7 years, axial length [AL]: 28.69 ± 2.12 mm). For all eyes, the equatorial diameter of the globe/AL ratio (EAR) and the globe/orbit volume ratio (GOR) were measured using MRI. EAR and GOR values were compared between the following groups: 9 men vs. 20 women; 8 younger (&lt; 56 years) vs. 21 older (≥ 56 years) patients; and non-esotropia strabismus (NES: 7 patients) vs. esotropia (ET: 13 patients) vs. restrictive strabismus (RS: 9 patients) groups.&lt;br&gt;
Results Female patients had a smaller EAR (0.87 ± 0.07) and larger GOR (0.38 ± 0.04) than male patients (0.92 ± 0.05 and 0.35 ± 0.03, both P &lt; 0.01). Older patients had a smaller EAR (0.87 ± 0.07) than younger ones (0.93 ± 0.04, P &lt; 0.01), without significant differences in GOR. EAR (NES: 0.92 ± 0.06, ET: 0.86 ± 0.06, RS: 0.89 ± 0.09) significantly differed among the three strabismus groups (P = 0.02: post-hoc test: NES vs. ET, P = 0.02; NES vs. RS, P = 0.49; RS vs. ET, P = 0.67), but no significant differences in GOR were found (P = 0.12).&lt;br&gt;
Conclusions Among patients with acquired strabismus and high myopia, women, older patients, and those with esotropia exhibit a smaller EAR and longer sphere shape with AL as the major axis. The parameter EAR might be useful for evaluating the pathogenesis of strabismus associated with high myopia.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
    <ObjectList>
      <Object Type="keyword">
        <Param Name="value">High myopia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Strabismus</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Eye dimensions</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Magnetic resonance imaging</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Esotropia</Param>
      </Object>
    </ObjectList>
    <ReferenceList/>
  </Article>
  <Article>
    <Journal>
      <PublisherName>Okayama University Medical School</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0386-300X</Issn>
      <Volume>75</Volume>
      <Issue>4</Issue>
      <PubDate PubStatus="ppublish">
        <Year>2021</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Clinical Parameters Reflecting Globe/orbit Volume Imbalances in Japanese Acquired Esotropia Patients with High Myopia but without Abduction Limitations</ArticleTitle>
    <FirstPage LZero="delete">447</FirstPage>
    <LastPage>453</LastPage>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumiko</FirstName>
        <LastName>Kishimoto</LastName>
        <Affiliation>Division of Ophthalmology, Ibara City Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Hiroshi</FirstName>
        <LastName>Ohtuski</LastName>
        <Affiliation>Division of Ophthalmology, Okayama Saiseikai General Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumio</FirstName>
        <LastName>Shiraga</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType>Original Article</PublicationType>
    <ArticleIdList>
      <ArticleId IdType="doi">10.18926/AMO/62396</ArticleId>
    </ArticleIdList>
    <Abstract>In high myopia, eye dislocation due to increased globe volume or tight orbital volume causes acquired esotro-pia. GOR (globe/orbit volume ratio), an indicator of the degree of progression of this pathology, was investi-gated the relationships among easily obtained clinical parameters. In this retrospective study, 20 eyes from 10 acquired esotropia patients with high myopia but without abduction limitations were examined. The mean age of the patients was 63.7 ± 8.2 years (mean ± standard deviation). Volumes were measured on the three-dimen-sional fast imaging employing steady-state acquisition magnetic resonance imaging images using the vol-ume-measurement function. Correlations between GOR and the displacement angle of the globe (DA), axial length (AL), and equatorial diameter (ED) were investigated. Mean DA, AL, ED, and GOR values were 107.5 ± 8.5°, 28.86 ± 1.92 mm, 25.00 ± 1.16 mm, and 0.36 ± 0.05, respectively. Only AL was correlated with GOR (p &lt; 0.0001, R2 = 0.6649); DA (p = 0.30, R2 = 0.0633) and ED (p = 0.91, R2 = 0.0008) were not. AL was the only clinically available parameter to indicate globe/orbit volume imbalances in acquired esotropia with high myopia but without abduction limitation. AL may be important for the clinical assessment of the progression of this pathology.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
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      <Object Type="keyword">
        <Param Name="value">acquired esotropia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">high myopia (high myopes)</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">globe volume</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">magnetic resonance imaging</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">limitation of abduction</Param>
      </Object>
    </ObjectList>
    <ReferenceList/>
  </Article>
  <Article>
    <Journal>
      <PublisherName>Public Library of Science</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>1932-6203</Issn>
      <Volume>15</Volume>
      <Issue>12</Issue>
      <PubDate PubStatus="ppublish">
        <Year>2020</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Shape analysis of rectus extraocular muscles with age and axial length using anterior segment optical coherence tomography</ArticleTitle>
    <FirstPage LZero="delete">e0243382</FirstPage>
    <LastPage/>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Atsushi</FirstName>
        <LastName>Fujiwara</LastName>
        <Affiliation>Department of Orthoptics, Faculty of Rehabilitation, Kawasaki University of Medical Welfare</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Takehiro</FirstName>
        <LastName>Shimizu</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Keisuke</FirstName>
        <LastName>Kanenaga</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Masanori</FirstName>
        <LastName>Nakazawa</LastName>
        <Affiliation>Department of Ophthalmology, Kagoshima University Graduate School of Medical and Dental Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType/>
    <ArticleIdList>
      <ArticleId IdType="doi"/>
    </ArticleIdList>
    <Abstract>Purpose&lt;/br&gt;
This study aimed to evaluate the shape of the extraocular muscles (EOMs) in normal subjects using the en-face images of anterior segment optical coherence tomography (AS-OCT). The EOM insertion and the direction of the muscle fibers were investigated.&lt;/br&gt; 
Subjects and methods&lt;/br&gt;
A total of 97 healthy normal subjects (194 eyes) at Okayama University Hospital (age, 47.1±21.5 years; range, 8–79 years) participated in the study. A series of 256 tomographic images of the rectus EOMs were captured using the C-scan function of the AS-OCT (CASIA2, TOMEY Co., Japan), and the images were converted to en-face images in multi-TIFF format. The anterior chamber angle to EOM insertion distance (AID) and the angle of the muscle fibers from the insertion site (angle of muscles) were measured from the images. The correlations of AID and angle of muscles with age and axial length were investigated and evaluated.&lt;/br&gt; 
Results&lt;/br&gt;
AID and angle of muscles were significantly correlated with age or axial length in some EOMs. The AIDs of medial rectus (MR) (P = 0.000) and superior rectus (SR) (P = 0.005) shortened with age. The AIDs of MR (P = 0.001) and inferior rectus (IR) (P = 0.035) elongated with axial length, whereas lateral rectus (LR) (P = 0.013) shortened. The angles of MR (P = 0.001) and LR (P = 0.000) were found to have a more downward direction toward the posterior in older subjects.&lt;/br&gt; 
Conclusion&lt;/br&gt;
En-face images can be created by AS-OCT, and the shape of the EOMs in normal subjects using these image measurements was available. With the ability to assess the EOMs, AID and angle of muscles are expected give useful information for treating and diagnosing strabismus-related diseases.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
    <ObjectList/>
    <ReferenceList/>
  </Article>
  <Article>
    <Journal>
      <PublisherName>BMC</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>1471-2415</Issn>
      <Volume>20</Volume>
      <Issue>1</Issue>
      <PubDate PubStatus="ppublish">
        <Year>2020</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Risk factors for excessive postoperative exo-drift after unilateral lateral rectus muscle recession and medial rectus muscle resection for intermittent exotropia</ArticleTitle>
    <FirstPage LZero="delete"/>
    <LastPage/>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Shin</FirstName>
        <LastName>Morisawa</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Takehiro</FirstName>
        <LastName>Shimizu</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Manabu</FirstName>
        <LastName>Miyata</LastName>
        <Affiliation>Department of Ophthalmology and Visual Sciences, Kyoto University Graduate School of Medicine</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Takashi</FirstName>
        <LastName>Furuse</LastName>
        <Affiliation>Department of Ophthalmology,Kawasaki Medical School General Medical Center</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Satoshi</FirstName>
        <LastName>Hasebe</LastName>
        <Affiliation>Department of Ophthalmology,Kawasaki Medical School General Medical Center</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Hiroshi</FirstName>
        <LastName>Ohtsuki</LastName>
        <Affiliation>Division of Ophthalmology, Okayama Saiseikai General Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumio</FirstName>
        <LastName>Shiraga</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType/>
    <ArticleIdList>
      <ArticleId IdType="doi"/>
    </ArticleIdList>
    <Abstract>Background: To detect significant factors associated with excessive postoperative exo-drift in young patients with intermittent exotropia who had undergone unilateral lateral rectus muscle recession and medial rectus muscle resection. &lt;br/&gt;
Methods: We retrospectively examined the records of 64 consecutive patients &lt; 18 years old who underwent surgery between April 2004 and December 2011. We sought risk factors for excessive postoperative exo-drift among patients' demographic and clinical characteristics using univariate and multivariable linear regression analysis. &lt;br/&gt;
Results: Younger patients (P = 0.007), and those with larger preoperative exo-deviation at distance (P = 0.033), a lower incidence of peripheral fusion at distance (P = 0.021) or a greater postoperative initial eso-deviation (P = 0.001), were significantly more likely to have an excessive postoperative exo-drift (&gt; 20 prism diopters). Univariate analysis revealed significant associations between excessive postoperative exo-drift and age at surgery (P = 0.004), preoperative exo-deviation at distance (P = 0.017) and postoperative initial eso-deviation at distance (P &lt; 0.001). Multivariable linear regression analysis showed that postoperative initial eso-deviation at distance (P = 0.008) was significantly associated with postoperative exo-drift. &lt;br/&gt;
Conclusions: Postoperative exodrift in unilateral RR is predicted by the initial postoperative eso-deviation, which may offset the overcorrection. However, the exo-drift is greater in cases with a large preoperative exo-deviation and/or at a younger age, and should be followed carefully. </Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
    <ObjectList>
      <Object Type="keyword">
        <Param Name="value">Intermittent exotropia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Postoperative exo-drift</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Recurrent exotropia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Recession and resection procedure</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Strabismus surgery</Param>
      </Object>
    </ObjectList>
    <ReferenceList/>
  </Article>
  <Article>
    <Journal>
      <PublisherName>Okayama University Medical School</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0386-300X</Issn>
      <Volume>74</Volume>
      <Issue>3</Issue>
      <PubDate PubStatus="ppublish">
        <Year>2020</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Formulas to Estimate Appropriate Surgical Amounts of Unilateral Recession-Resection in Intermittent Exotropia with Distance-Near Disparity</ArticleTitle>
    <FirstPage LZero="delete">229</FirstPage>
    <LastPage>236</LastPage>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Kiyo</FirstName>
        <LastName>Shibata</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Shinji</FirstName>
        <LastName>Toshima</LastName>
        <Affiliation>Department of Ophthalmology, Kurashiki Medical Center</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Takehiro</FirstName>
        <LastName>Shimizu</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Manabu</FirstName>
        <LastName>Miyata</LastName>
        <Affiliation>Department of Ophthalmology and Visual Sciences Kyoto University Graduate School of Medicine</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Shin</FirstName>
        <LastName>Morisawa</LastName>
        <Affiliation>Department of Ophthalmology, Kawasaki Medical School General Medical Center</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Takashi</FirstName>
        <LastName>Furuse</LastName>
        <Affiliation>Department of Ophthalmology, Okayama Saiseikai General Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Satoshi</FirstName>
        <LastName>Hasebe</LastName>
        <Affiliation>Department of Ophthalmology, Okayama Saiseikai General Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Hiroshi</FirstName>
        <LastName>Ohtsuki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama Saiseikai General Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumio</FirstName>
        <LastName>Shiraga</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType>Original Article</PublicationType>
    <ArticleIdList>
      <ArticleId IdType="doi">10.18926/AMO/59956</ArticleId>
    </ArticleIdList>
    <Abstract>The purpose of this study was to derive new formulas to provide an optimal surgical procedure and optimal amount of recession-resection (RR) surgery in intermittent exotropia (IXT) with a disparity in angle of deviation depending on the fixation distance. The records of 117 consecutive patients with IXT who underwent RR surgery between March 2008 and December 2011 at Okayama University Hospital were retrospectively examined. Multivariable linear regression analysis was performed using the observed corrective angle of deviation at distance or near fixation as the dependent variable, and amounts of lateral rectus muscle (LR) recession (mm) and medial rectus muscle (MR) resection, and age at surgery (years) as independent variables. Two simultaneous formulas were derived: corrective angle of deviation at distance fixation (°)=1.8×recession (mm)+1.6× resection (mm)+0.15×age (years)–6.6, and corrective angle at near fixation (°)=1.5×recession (mm)+1.7× resection (mm)+0.18×age (years)–3.8. Comparisons of coefficient values of the formulas between distance and near fixation revealed that LR recession was more affected by the corrective angle in distance than near fixation. MR resection was more affected at near than distance fixation. We found that our new formulas estimated the appropriate amount of unilateral RR surgery.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
    <ObjectList>
      <Object Type="keyword">
        <Param Name="value">surgical amount</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">intermittent exotropia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">recession and resection procedure</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">strabismus surgery</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">recurrent exotropia</Param>
      </Object>
    </ObjectList>
    <ReferenceList/>
  </Article>
  <Article>
    <Journal>
      <PublisherName>Springer</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0721832X</Issn>
      <Volume>257</Volume>
      <Issue/>
      <PubDate PubStatus="ppublish">
        <Year>2019</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Magnetic resonance imaging findings of age-related distance esotropia in Japanese patients with high myopia</ArticleTitle>
    <FirstPage LZero="delete">662</FirstPage>
    <LastPage>662</LastPage>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Reika</FirstName>
        <LastName>Kono</LastName>
        <Affiliation>Department of Ophthalmology, Medical School, Okayama University</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Hiroshi</FirstName>
        <LastName>Ohtsuki</LastName>
        <Affiliation>Division of Ophthalmology, Okayama Saiseikai General Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumiko</FirstName>
        <LastName>Kishimoto</LastName>
        <Affiliation>Division of Ophthalmology, Ibara City Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Ichiro</FirstName>
        <LastName>Hamasaki</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Hospital</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yuki</FirstName>
        <LastName>Morizane</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Fumio</FirstName>
        <LastName>Shiraga</LastName>
        <Affiliation>Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences</Affiliation>
      </Author>
    </AuthorList>
    <PublicationType/>
    <ArticleIdList>
      <ArticleId IdType="doi"/>
    </ArticleIdList>
    <Abstract>Purpose&lt;br/&gt;
This study aimed to investigate the characteristics of the extraocular muscles and the orbital connective tissue pulleys in Japanese patients with age-related distance esotropia (ARDE) and high myopia using magnetic resonance imaging (MRI).&lt;br/&gt;
Methods&lt;br/&gt;
This was a retrospective case-series study. High-resolution coronal MRI scans of 12 orbits were obtained in 6 patients with ARDE and high myopia (age range: 51–69 years). We analyzed the images to determine the positions of the rectus muscle pulleys relative to the center of the globe, the integrity of the lateral rectus-superior rectus muscle (LR-SR) band, and the LR angle (the angle between the major axis of the LR and the vertical plane).&lt;br/&gt;
Results&lt;br/&gt;
The distance esotropia ranged from 4 to 25∆, and 3 cases exhibited vertical deviations. The mean (±standard deviation (SD)) axial length was 28.5 (± 1.6) mm. The mean positions of the medial rectus muscle pulley and LR pulley were 1.3 mm inferior and 1.4 mm inferior, respectively, to those seen in the normal control group in our previous study (P = 0.002 and P = 0.05, respectively). All 12 orbits had abnormal elongated LR-SR bands, and 8 orbits (67%) displayed ruptured LR-SR bands. The LR angle (mean±SD; 18.8° ± 8.5°) increased significantly with the inferior displacement of the LR pulley (R2 = 0.77, P = 0.0002).&lt;br/&gt;
Conclusions&lt;br/&gt;
Inferior displacement of the LR pulley and abnormal LR-SR bands were seen in Japanese ARDE patients with high myopia, as was found in ARDE patients without high myopia. The LR angle might be useful for judging the degree of LR pulley displacement.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
    <ObjectList>
      <Object Type="keyword">
        <Param Name="value">age-related distance esotropia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">esotropia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">high myopia</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">orbital pulley</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">sagging eye syndrome</Param>
      </Object>
    </ObjectList>
    <ReferenceList/>
  </Article>
</ArticleSet>
