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1.
BMC Ophthalmol ; 24(1): 207, 2024 May 06.
Article in English | MEDLINE | ID: mdl-38711043

ABSTRACT

PURPOSE: To understand the ocular biometric parameters characteristics and refractive errors in 3-to 6-year-old preschool children in Chengdu, China, and to investigate the prevalence of refractive errors. METHOD: A school-based cross-sectional study was conducted in Chengdu from 2020 to2022 with a total of 666 kindergartens. All children were measured by non-cycloplegic autorefraction and uncorrected visual acuity (UCVA) and ocular biometric parameters. Finally, univariate linear regression models were used to analyze the relationship between ocular biometric parameters and refraction. RESULTS: A total of 108,578 preschool children aged 3-6 underwent examinations, revealing a myopia prevalence of 6.1%. The mean axial length (AL), keratometry (K), corneal radius (CR), axial length/corneal radius (AL/CR) Ratio, central corneal thickness (CCT), anterior chamber depth (ACD), lens thickness (LT), and vitreous chamber depth (VCD) were 22.35 ± 0.69 mm, 43.35 ± 1.58 D, 7.80 ± 0.28 mm, 2.87 ± 0.08, 533.31 ± 32.51 µm, 2.70 ± 0.28 mm, 3.91 ± 0.27 mm, and 15.20 ± 0.68 mm, respectively. With increasing age, AL, CR, AL/CR ratio, CCT, ACD, LT, and VCD also increased. Regardless of age, males consistently exhibited longer AL, flatter corneal curvature, shallower ACD, thicker CCT, thinner LT, and longer VCD compared to females. AL, K, CR, LT, and VCD all showed significant linear relationships with SE (all P < 0.001) in univariate linear regression analysis after adjusting for gender and age. CONCLUSION: The prevalence of myopia among preschool children aged 3-6 in Chengdu is relatively low. Ocular biometric parameters affecting refractive errors include AL, K, CR, LT, and VCD. The preschool period serves as a critical phase for myopia prevention and control.


Subject(s)
Biometry , Refraction, Ocular , Visual Acuity , Humans , Female , Male , Cross-Sectional Studies , China/epidemiology , Refraction, Ocular/physiology , Child, Preschool , Child , Visual Acuity/physiology , Prevalence , Axial Length, Eye , Cornea/pathology , Cornea/anatomy & histology , Refractive Errors/epidemiology , Refractive Errors/physiopathology , Anterior Chamber/diagnostic imaging , Anterior Chamber/pathology , Myopia/epidemiology , Myopia/physiopathology
2.
West Afr J Med ; 41(3): 286-292, 2024 Mar 29.
Article in English | MEDLINE | ID: mdl-38787809

ABSTRACT

PURPOSE: This study set out to determine the prevalence and the factors contributing to ocular disorders among children with physical and mental disabilities, who represent a vulnerable group in Osun State. METHODOLOGY: This was a cross-sectional study among children with physical and mental disabilities aged 5-17 years using a multistage sampling technique. Demographics, presence of ocular symptoms and determinants of ocular disorders were noted. Distant visual acuities were measured; refraction and ocular examination were performed. Appropriate drug treatment, prescribed spectacle or low vision aids were dispensed as necessary, at subsidized rates. RESULTS: Of 189 children enrolled, 103(54.5%) were males and 86(45.5%) were females, with male to female ratio of 1.2:1. Mean age was 14.7 ± 0.45 years and 28/189 (14.8%) had ocular disorders in either eye. Some of the participants had multiple pathologies. The commonest identified visual disorder was refractive error (11.1%). There was a statistically significant ocular disorder determinant among most mothers of respondents (82.1%) who had ocular disorders and did not receive antenatal care in the hospital, p<0.05. Only 28.6% of children who had ocular disorders were fully immunized. CONCLUSION: The majority of mothers of children with ocular disorders did not receive antenatal care in the hospital. Health education on the importance of early antenatal care in the hospital is advocated to reduce the occurrence of ocular disorders. Early assessment and correction of ocular problems will prevent unnecessary visual impairment in these vulnerable children.


OBJECTIF: Cette étude visait à déterminer la prévalence et les facteurs contribuant aux troubles oculaires chez les enfants présentant des handicaps physiques et mentaux, qui représentent un groupe vulnérable dans l'État d'Osun. MÉTHODOLOGIE: Il s'agissait d'une étude transversale menée auprès d'enfants atteints de handicaps physiques et mentaux âgés de 5 à 17 ans, utilisant une technique d'échantillonnage à plusieurs niveaux. Les données démographiques, la présence de symptômes oculaires et les déterminants des troubles oculaires ont été notés. Les acuités visuelles à distance ont été mesurées ; la réfraction et l'examen oculaire ont été effectués. Un traitement médicamenteux approprié, des lunettes prescrites ou des aides à la basse vision ont été délivrés au besoin, à des tarifs subventionnés. RÉSULTATS: Sur 189 enfants inscrits, 103 (54,5 %) étaient des garçons et 86 (45,5 %) étaient des filles, avec un ratio garçons/filles de 1,2:1, âge moyen de 14,7 ± 0,45 ans ; tandis que 28/189 (14,8 %) présentaient des troubles oculaires dans l'un ou l'autre des yeux. Certains participants avaient plusieurs pathologies. Le trouble visuel le plus fréquemment identifié était l'erreur réfraction (11,1 %). Il y avait un déterminant de trouble oculaire statistiquement significatif chez la majorité des mères des répondants (82,1 %) qui avaient des troubles oculaires et n'avaient pas reçu de soins prénatals à l'hôpital p<0,05. Seulement 28,6 % des enfants présentant des troubles oculaires étaient entièrement immunisés. CONCLUSION: La plupart des mères d'enfants atteints de troubles oculaires n'ont pas reçu de soins prénatals à l'hôpital. Une éducation sanitaire sur l'importance des soins prénatals précoces à l'hôpital est préconisée afin de réduire l'occurrence des troubles oculaires. L'évaluation précoce et la correction des problèmes oculaires préviendront une atteinte visuelle inutile chez ces enfants vulnérables. MOTS-CLÉS: Trouble oculaire, Prévalence, Enfants en âge scolaire, Handicaps physiques et mentaux.


Subject(s)
Eye Diseases , Humans , Nigeria/epidemiology , Female , Male , Child , Cross-Sectional Studies , Prevalence , Adolescent , Child, Preschool , Eye Diseases/epidemiology , Disabled Children/statistics & numerical data , Visual Acuity , Risk Factors , Refractive Errors/epidemiology
3.
PLoS One ; 19(5): e0303324, 2024.
Article in English | MEDLINE | ID: mdl-38739623

ABSTRACT

BACKGROUND: Scoliosis is one of the most common surgical disorders of the pediatric spine. Refractive errors are commonly associated with vision impairment worldwide. However, it is currently unclear whether refractive error correlates directly with the development of scoliosis. METHODS: A cross-sectional study was performed in 2023, and a stratified cluster sampling technique was employed among school-aged students in Nantong City, China. Univariate and multivariate logistic regression analyses were used to investigate specific correlations between scoliosis and related parameters; various types of refractive errors were also included in the study. RESULTS: The prevalence of scoliosis among school-aged students was 2.2% in Nantong city. Multiple logistic regression analyses showed that myopia, hyperopia, astigmatism, and anisometropia were not correlated with the development of scoliosis (all, p≥0.05). Lower body mass index (BMI) [adjusted odds ratio (aOR) = 0.92; 95% confidence interval (CI): 0.88-0.95; p<0.001], living in rural areas (aOR = 1.40; 95% CI: 1.05-1.86; p = 0.020), and older age (aOR = 1.32; 95% CI: 1.25-1.38; p<0.001) had significantly higher risks of scoliosis. CONCLUSIONS: Refractive errors did not correlate with the development of scoliosis. However, BMI, living in rural areas and older age did correlate with the development of scoliosis.


Subject(s)
Refractive Errors , Scoliosis , Scoliosis/epidemiology , Scoliosis/complications , Humans , Male , Female , Cross-Sectional Studies , Refractive Errors/epidemiology , Child , Adolescent , China/epidemiology , Prevalence , Risk Factors , Body Mass Index , Logistic Models
4.
BMC Ophthalmol ; 24(1): 116, 2024 Mar 13.
Article in English | MEDLINE | ID: mdl-38481203

ABSTRACT

BACKGROUND: To investigate the prevalence and risk factors for astigmatism in 7-19-year-old students in Xinjiang, China. METHODS: A school-based, cross-sectional study was conducted on students who underwent refraction examination in Xinjiang, China, between May and December 2019. The prevalence of astigmatism was determined. Astigmatism was defined as cylinder power (C) ≤-0.75 D, undefined astigmatism as ≤-1.50 D, and high astigmatism as C ≤-3.00 D. Astigmatism types were: against-the-rule astigmatism (maximum refraction of the main meridian in 180° ± 30°), with-the-rule astigmatism (maximum refraction of the main meridian at 90°±30°), and oblique astigmatism (all other cases). RESULTS: Of the 71,838 students examined (51.0% boys, 7 - 19 years old), 25,945 (36.1%, 95%CI: 35.52-36.68%) had astigmatism and 1267 (1.8%, 95%CI: 1.07-2.53%) had high astigmatism. The prevalence of astigmatism was greater in Han individuals (39.6%) compared with the Hui (34.0%), Kazakh (34.0%), Kyrgyz (32.1%), and Uyghur (26.4%) populations. Among the 25,945 students with astigmatism, 19,947 had with-the-rule astigmatism (76.9%), 3405 had against-the-rule astigmatism (13.1%), and 2593 had oblique astigmatism (10.0%). Multivariable logistic regression analysis showed that ethnicity (Han individuals more susceptible), male gender, age, and refractive errors (myopia and hyperopia) were independently associated with astigmatism, high astigmatism, and with-the-rule astigmatism (all P < 0.05). CONCLUSIONS: The prevalence of astigmatism among children and adolescents in Xinjiang was 36.1%, including 1.8% of high astigmatism. In this population, astigmatism was mainly of the with-the-rule astigmatism type (76.9%). Han ethnicity, male gender, and myopia or hyperopia were independently associated with a high risk of astigmatism.


Subject(s)
Astigmatism , Hyperopia , Myopia , Refractive Errors , Child , Adolescent , Humans , Male , Young Adult , Adult , Female , Astigmatism/epidemiology , Astigmatism/diagnosis , Cross-Sectional Studies , Prevalence , Refractive Errors/epidemiology , Myopia/epidemiology , Students , Risk Factors , China/epidemiology
5.
PLoS One ; 19(3): e0298960, 2024.
Article in English | MEDLINE | ID: mdl-38527026

ABSTRACT

INTRODUCTION: The increasing prevalence of refractive error has become a serious health issue that needs serious attention. However, there are few studies regarding the prevalence and associated factors of refractive error at the community level in Ethiopia as well as in the study area. Therefore, providing updated data is crucial to reduce the burdens of refractive error in the community. OBJECTIVE: To assess the prevalence and associated factors of refractive error among adults in Hawassa City, South Ethiopia, 2023. METHOD: A community-based cross-sectional study was conducted on 951 adults using a multistage sampling technique from May 8 to June 8, 2023, in Hawassa City, South Ethiopia. A pretested, structured questionnaire combined with an ocular examination and a refraction procedure was used to collect data. The collected data from the Kobo Toolbox was exported to a statistical package for social sciences for analysis. Binary and multivariable logistic regression analyses were performed. A P-value of less than 0.05 was considered statistically significant in the multivariable analysis. RESULT: A total of 894 study participants were involved in this study with a 94.1% response rate. The prevalence of refractive error was 12.3% (95% CI: 10.2, 14.5%). Regular use of electronic devices (adjusted odds ratio = 3.64, 95% CI: 2.25, 5.91), being diabetic (adjusted odds ratio = 4.02, 95% CI: 2.16, 7.48), positive family history of refractive error (adjusted odds ratio = 2.71, 95% CI 1.59, 4.61) and positive history of cataract surgery (adjusted odds ratio = 5.17, 95% CI 2.19, 12.4) were significantly associated with refractive error. CONCLUSION AND RECOMMENDATION: The overall magnitude of refractive error in our study area was high. Regular use of electronic devices, being diabetic, positive family history of refractive error, and a positive history of cataract surgery were associated with refractive error.


Subject(s)
Cataract , Diabetes Mellitus , Refractive Errors , Adult , Humans , Cross-Sectional Studies , Ethiopia/epidemiology , Prevalence , Risk Factors , Refractive Errors/epidemiology , Cataract/epidemiology
6.
PLoS One ; 19(3): e0300799, 2024.
Article in English | MEDLINE | ID: mdl-38527046

ABSTRACT

BACKGROUND: In developing countries such as Kenya, minimal attention has been directed towards population based studies on uncorrected refractive error (URE). However, the absence of population based studies, warrants utilization of other avenues to showcase to the stakeholders in eye health the worth of addressing URE. Hence this study estimated the lost productivity to the Gross Domestic Product (GDP) as a result of URE and the national cost required to address visual impairment from URE in Kenya. METHODS: The lost productivity to the GDP for the population aged 16-60 years was calculated. Thereafter the productivity loss of the caregivers of severe visual impaired individuals was computed as a product of the average annual productivity for each caregiver and a 5% productivity loss due to visual impairment. The productivity benefit of correcting refractive error was estimated based on the minimum wage for individuals aged between 16-60 years with URE. Estimation of the national cost of addressing URE was based on spectacle provision cost, cost of training functional clinical refractionists and the cost of establishing vision centres. A cost benefit analysis was undertaken based on the national cost estimates and a factor of 3.5 times. RESULTS: The estimated lost productivity to the GDP due to URE in in Kenya is approximately US$ 671,455,575 -US$ 1,044,486,450 annually for population aged between 16-60 years. The productivity loss of caregivers for the severe visually impaired is approximately US$ 13,882,899 annually. Approximately US$ 246,750,000 is required to provide corrective devices, US$ 413,280- US$ 108,262,300 to train clinical refractionists and US$ 39,800,000 to establish vision centres. The productivity benefit of correcting visual impairment is approximately US$ 41,126,400 annually. Finally, a cost benefit analysis showed a return of US$ 378,918,050 for human resources, US$ 863,625,000 for corrective devices and US$ 139,300,000 for establishment of vision centres. CONCLUSION: The magnitude of productivity loss due to URE in Kenya is significant warranting prioritization of refractive error services by the government and all stakeholders since any investment directed towards addressing URE has the potential to contribute a positive return.


Subject(s)
Refractive Errors , Vision, Low , Visually Impaired Persons , Humans , Adolescent , Young Adult , Adult , Middle Aged , Gross Domestic Product , Kenya , Refractive Errors/epidemiology , Vision, Low/epidemiology , Vision Disorders , Prevalence
7.
BMC Pediatr ; 24(1): 202, 2024 Mar 21.
Article in English | MEDLINE | ID: mdl-38515102

ABSTRACT

BACKGROUND: Undetected vision problems are common in school children, and a prevalence of up to 40% has previously been reported. Uncorrected vision and lack of optimal eye wear can have a significant impact on almost all aspects of everyday life, such as development and learning, academic performance, pain and discomfort, and quality of life. This study aimed to analyze the relationship between uncorrected vision problems, educational outcomes, and musculoskeletal pain symptoms. METHODS: A total of 152 school children (15.1 ± 0.8 years, mean ± SD; 40% males) were included in the study. All participants were recruited from a free-of-charge school vision testing program in Kathmandu, Nepal. Academic grades were collected from the school records of the participants' nationwide final grade examinations. A questionnaire was used to record the use of digital devices, screen time, and associated symptoms, including musculoskeletal pain (Wong-Baker FACES Pain Rating Scales). RESULTS: A total of 61 children (40%) had uncorrected vision, with a cycloplegic refraction of SER - 0.53 ± 0.52 (mean ± SD). Children with uncorrected vision had significantly more third division grades (26 vs. 9%, p = 0.004) and shoulder pain in general/during screen use (66 vs. 43/40%, p = 0.008/0.003; 2.1/1.9 vs. 1.1/1.0 mean pain score, p = 0.002/0.001) compared with children with normal vision. Sex based subanalyses showed that only girls with uncorrected vision had more third division grades (25 vs. 4%, p = 0.006), and only boys with uncorrected vision had more shoulder pain in general/during screen use (76 vs. 28/31%, p < 0.001; 2.2/2.4 vs. 0.7 mean pain score, p < 0.001), compared with children with normal vision. CONCLUSIONS: The results of this study showed that even small refractive errors may impact educational outcomes and musculoskeletal pain in adolescents. Most of the participating children had low myopia, easily corrected with glasses. This suggests that regular eye examinations are important in school children, and there is a need for raised awareness among parents, and school- and healthcare personnel.


Subject(s)
Academic Performance , Musculoskeletal Pain , Refractive Errors , Male , Child , Female , Humans , Adolescent , Visual Acuity , Musculoskeletal Pain/diagnosis , Shoulder Pain , Quality of Life , Refractive Errors/diagnosis , Refractive Errors/epidemiology , Prevalence
8.
BMJ Paediatr Open ; 8(1)2024 02 07.
Article in English | MEDLINE | ID: mdl-38325900

ABSTRACT

OBJECTIVE: The aim of this study was to determine the prevalence, causes of ocular disorders and visual impairment among preterm children previously admitted to neonatal intensive care units in Addis Ababa, Ethiopia. METHODS AND ANALYSIS: A prospective screening survey was conducted from February to June 2019 at the paediatric eye clinic of Menelik II Hospital. Children who were preterm at birth and who attended the eye clinic were included in the study. Data on demographic and neonatal characteristics, neonatal and maternal comorbidities and ocular disorders were collected. OR and univariate analysis were used to identify predictors of ocular diseases and visual impairment. RESULTS: There were 222 children included in the study with a mean age at presentation of 2.62 years (range 2.08-6.38 years), mean gestational age 34.11 weeks (range 30-36) weeks and mean birth weight 1941.72 g (range 953-3500 g). Nearly two-thirds had ocular disorders with refractive error (51.8%), strabismus (11.3%) and a history of retinopathy of prematurity (ROP) (7.2%) being more common. One-fourth of the children had visual impairment, and the prevalence of amblyopia was 40.1%. Uncorrected refractive errors, strabismus and ROP were causes for visual impairment. CONCLUSION: Visual impairment and amblyopia are common in Ethiopia. There is a need to develop a screening protocol for ocular disorders for preterm children to enhance early detection and prevention of childhood visual impairment.


Subject(s)
Amblyopia , Refractive Errors , Retinopathy of Prematurity , Strabismus , Vision, Low , Humans , Infant, Newborn , Child , Child, Preschool , Infant , Amblyopia/diagnosis , Amblyopia/epidemiology , Prevalence , Prospective Studies , Ethiopia/epidemiology , Refractive Errors/complications , Refractive Errors/epidemiology , Strabismus/epidemiology , Retinopathy of Prematurity/epidemiology , Retinopathy of Prematurity/diagnosis
9.
Ann N Y Acad Sci ; 1533(1): 81-88, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38327125

ABSTRACT

Our aim was to find the best evidence on the prevalence of idiopathic scoliosis (IS) in subjects with eye diseases (EDs) and to determine the most common visual alterations that are present. Following the recommendations of the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA), a bibliographic search up to June 2023 in the PubMed, PsycINFO, SCOPUS, and CINAHL Complete databases was performed. Observational studies were selected and the results were analyzed with prevalence odds ratio (OR). A total of six studies, including 18,396 subjects, were selected. The group of subjects with EDs was made up of 6048 individuals, of whom 655 (10.83%) had IS. The group of subjects without EDs was made up of 12,348 individuals of whom 444 (3.60%) presented with IS with an OR = 2.91, CI (95%) = [1.75, 4.83]. Blindness was assessed in a single study with an OR = 7.83, CI (95%) = [1.66, 36.90]; all three studies in the refractive error subgroup yielded an OR = 2.24, CI (95%) = [1.10, 4.58]; and the two studies that included subjects with strabismus showed an OR = 3.09, CI (95%) = [1.38, 7.00]. EDs were associated with an almost three times greater odds of having IS. We recommend the inclusion of vision testing in children with IS.


Subject(s)
Refractive Errors , Scoliosis , Child , Humans , Scoliosis/complications , Scoliosis/epidemiology , Refractive Errors/complications , Refractive Errors/epidemiology , Vision Disorders/complications , Prevalence
10.
Sci Rep ; 14(1): 3890, 2024 02 16.
Article in English | MEDLINE | ID: mdl-38365946

ABSTRACT

This cross-sectional study aims to investigate the prevalence and causes of visual impairment (VI) and blindness in Jiangsu Province, China in 2022 during the COVID-19 pandemic. Participants (n = 13,208, aged 18-93) underwent comprehensive ocular examinations. The prevalence and causes of binocular VI (presenting visual acuity [VA] ≥ 20/400 and < 20/63 in the better eye) and blindness (presenting VA < 20/400 in the better eye) were assessed according to the World Health Organization (WHO) criteria. The estimation of refractive error prevalence was conducted using the following classification: myopia ≤ - 0.50 diopters (D), high myopia ≤ - 6.00 D, hyperopia ≥ 0.50 D, and anisometropia ≥ 1.00 D. The overall prevalence of binocular VI and blindness was 21.04% (95% confidence interval [CI] 20.35-21.74%) and 0.47% (95% CI 0.37-0.60%). The highest prevalence of binocular VI was in the population aged 18-24 years old (46.29%, [95% CI 44.30-48.28%]), those with education at university and above (43.47%, [95% CI 41.93-45.02%]), students (54.96%, [95% CI 52.73-57.17%]). Uncorrected refractive error (URE) was the leading cause of presenting binocular VI (93.40%) and blindness (50.79%). The prevalence of myopia was 54.75% (95% CI 53.90-55.60%). Actions are needed to control URE and myopia within the adult Chinese population, with a particular emphasis on the younger, well-educated demographic.


Subject(s)
COVID-19 , Myopia , Refractive Errors , Vision, Low , Visually Impaired Persons , Adult , Humans , Adolescent , Young Adult , Cross-Sectional Studies , Prevalence , Pandemics , COVID-19/complications , COVID-19/epidemiology , Blindness/epidemiology , Blindness/etiology , Vision, Low/epidemiology , Refractive Errors/complications , Refractive Errors/epidemiology , Myopia/complications , China/epidemiology
11.
Cesk Slov Oftalmol ; 80(1): 34-41, 2024.
Article in English | MEDLINE | ID: mdl-38365580

ABSTRACT

Objective: To evaluate the prevalence of refractive errors among members of the Armed Forces of the Czech Republic, to recommend a safe way of correcting refractive errors with regard to the specific needs of military personnel (especially members of combat units and flying personnel), and to propose a system for solving these errors in order to increase combat effectivity. Methodology: Questionnaire to determine previous refractive surgery and spectacle correction wear. Measurement of refraction with a hand-held autorefractometer and evaluation of current visual acuity on ETDRS optotypes (Landolt rings). Results: 259 servicemen (518 eyes) were investigated. The return rate of the questionnaires was 100%. The incidence of myopia greater than -0.75D was 22% (113 eyes), myopia greater than -0.5D 32% (166 eyes). The mean value of myopia was -0.78 D (SD ±0.6). Hypermetropia values ranged from +0.25 to +5.0 D. The mean value of hypermetropia was 0.63 D (SD ±0.7). Astigmatism values ranged from -0.25 to -3.75. The mean value of astigmatism was -0.55 Dcyl (SD ±0.49). The average visual acuity was 84.1 letters ETDRS SD (±6.1), visual acuity worse than 80 letters was manifested by 23% of the members of the monitored group. 25 people (10%) had undergone laser refractive surgery. Visual acuity after laser refractive surgery was measured in 19 people (38 eyes). Mean uncorrected post-laser visual acuity was 83.87 (SD ±6.1) ETDRS letters. The mean follow-up period after laser refractive surgery was 6.78 (SD ±4.8) years. Conclusion: Despite the initial selection of military personnel and entry limitations, the prevalence of refractive errors is comparable to the general population. However, in contrast with the general population, refractive errors larger than -3.0 D were not represented in the group. Due to the finding of insufficient correction of refractive errors, increased emphasis should be placed on identifying and regularly observing military personnel with refractive errors


Subject(s)
Military Personnel , Refractive Errors , Humans , Czech Republic , Refractive Errors/epidemiology
12.
JAMA Ophthalmol ; 142(4): 292-298, 2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38386342

ABSTRACT

Importance: Refractive error remains the largest cause of correctable visual impairment in the US. Correction of refractive error will reduce visual impairment and its associated morbidity but also improve quality of life and productivity. Objective: To determine the burden of and risk factors (RFs) associated with any uncorrected refractive error (UCRE) and unmet refractive need (URN) in a population-based sample of African American adults. Design, Setting, and Participants: This cross-sectional study, conducted from April 2014 to April 2018, included a population-based sample of self-identified African American participants 40 years and older from 30 contiguous census tracts in Inglewood, California. Participants underwent a complete ophthalmic examination and an in-home-administered questionnaire to assess sociodemographic, lifestyle, biological, medical, and health care and eye care usage RFs associated with UCRE and URN. Measurements of visual acuity (VA) were performed using a standard Early Treatment Diabetic Retinopathy Study protocol. Noncycloplegic automated refraction with supplemental subjective refraction was performed. UCRE was defined as an improvement of 2 or more lines with refraction in the better-seeing eye. URN was defined as an improvement of 2 or more lines with refraction in the better-seeing eye in those persons who were visually impaired. Sex- and age-specific burden of UCRE and URN were calculated, and multiple regression analyses were used to identify independent RFs. Study data were analyzed from May 2018 to December 2023. Exposures: Presence or absence of correctable refractive error. Main Outcomes and Measures: Self-reported sex- and age-specific prevalence of and risk indicators of UCRE and URN. Results: Of the 7957 eligible participants in the African American Eye Disease Study (AFEDS), 6347 (80%) completed both the in-home interview and the clinical examination. Of these, 6337 participants (mean [SD] age, 61 [11] years; 3997 female [63%]) with complete refractive error data were included in the analysis. Refractive error-related correctable visual impairment was present in over two-thirds of participants with visual impairment (68.7%). The overall prevalence of any UCRE was 14.6% (925 of 6337), and the overall prevalence of any URN was 5.4% (URN1 [those with presenting VA of worse than 20/40 in the better-seeing eye but who could achieve 20/40 or better with correction], 157 of 2893; URN2 [those with presenting VA of worse than 20/40 in the better-seeing eye but who could achieve an improvement of 2 or more lines with refractive correction], 155 of 2891). Conclusions and Relevance: Results of this cross-sectional study suggest a high burden of refractive error-associated correctable refractive error in African American adults, making it the leading cause of visual impairment in this population. Providing universal coverage for vision care and prescription glasses is an affordable and achievable health care intervention that could reduce the burden of visual impairment in African American adults by over two-thirds and likely raise the quality of life and work productivity, especially in this vulnerable minority population.


Subject(s)
Eye Diseases , Refractive Errors , Vision, Low , Visually Impaired Persons , Adult , Humans , Female , Middle Aged , Cross-Sectional Studies , Black or African American , Quality of Life , Visually Impaired Persons/statistics & numerical data , Refractive Errors/epidemiology , Prevalence
13.
Sci Rep ; 14(1): 254, 2024 01 02.
Article in English | MEDLINE | ID: mdl-38168543

ABSTRACT

This study aims to investigate the prevalence of visual impairments, such as myopia, hyperopia, and astigmatism, among school-age children (7-9 years) in Lubelskie Voivodeship (Republic of Poland) and apply artificial intelligence (AI) in the detection of severe ocular diseases. A total of 1049 participants (1.7% of the total child population in the region) were examined through a combination of standardized visual acuity tests, autorefraction, and assessment of fundus images by a convolutional neural network (CNN) model. The results from this artificial intelligence (AI) model were juxtaposed with assessments conducted by two experienced ophthalmologists to gauge the model's accuracy. The results demonstrated myopia, hyperopia, and astigmatism prevalences of 3.7%, 16.9%, and 7.8%, respectively, with myopia showing a significant age-related increase and hyperopia decreasing with age. The AI model performance was evaluated using the Dice coefficient, reaching 93.3%, indicating that the CNN model was highly accurate. The study underscores the utility of AI in the early detection and diagnosis of severe ocular diseases, providing a foundation for future research to improve paediatric ophthalmic screening and treatment outcomes.


Subject(s)
Astigmatism , Hyperopia , Myopia , Refractive Errors , Humans , Child , Astigmatism/epidemiology , Hyperopia/diagnosis , Hyperopia/epidemiology , Artificial Intelligence , Cohort Studies , Myopia/epidemiology , Prevalence , Refractive Errors/diagnosis , Refractive Errors/epidemiology
14.
Sci Rep ; 14(1): 2192, 2024 01 25.
Article in English | MEDLINE | ID: mdl-38272946

ABSTRACT

This study aimed to evaluate the association between iris color and refractive errors in children aged 6-12 years. This cross-sectional study was based on data obtained from the first phase of the Shahroud Schoolchildren Eye Cohort Study. The target population was 6 to12 year-old students living in urban and rural areas. Iris colors were classified by comparing eye colors with close-up images of iris colors. Myopia was defined as a spherical equivalent (SE) ≤ - 0.5 diopter and hyperopia was defined as SE ≥ 2 diopter in cycloplegic refraction. The association of iris color with hyperopia and myopia was investigated by fitting two separate multiple logistic regression models adjusted for place of residence, age, sex, and times for outdoor activity and near work. Among the 5394 participates with the mean age of 9.7 year, the prevalence of myopia and hyperopia was 4.8% and 4.7% respectively. The number and proportion (in parentheses) of amber, light blue, light brown, dark brown, gray, green and hazel iris colors were 19(0.4%), 26(0.5%), 645(12.0%), 4517(83.7%), 4(0.1%), 59(1.1%), and 124(2.3%) respectively. Compared to dark brown, the odds ratios and 95% confidence intervals (in parentheses) of myopia were 4.8(1.2-18.7), 0.8(0.1-5.8), 1.0(0.7-1.5), 0.4(0.1-2.7) and 0.6(0.2-1.8) for amber, light blue, light brown, green and hazel iris colors in multiple logistic regression model. No significant association was observed between iris colors and hyperopia. This study shows that amber iris is significantly associated with higher odds of myopia. These children should be further monitored and examined. More studies with higher sample size in all iris colors are recommended.


Subject(s)
Corylus , Hyperopia , Myopia , Refractive Errors , Child , Humans , Hyperopia/epidemiology , Cohort Studies , Cross-Sectional Studies , Amber , Refractive Errors/epidemiology , Myopia/epidemiology , Prevalence , Coloring Agents
15.
Eye (Lond) ; 38(8): 1462-1470, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38212403

ABSTRACT

INTRODUCTION: Retinopathy of prematurity (ROP) is a vision-threatening disease of premature infants. Practice guidelines recommend that all infants screened for ROP receive follow-up eye examinations to screen for ophthalmic complications.1 The purpose of this study was to identify risk factors for the development of strabismus, amblyopia, high refractive error, and cataracts among ROP-screened, non-treated infants. METHODS: Retrospective single-centre study of ROP-screened, non-treated premature infants with ophthalmic follow-up. Clinical variables were screened for association with ocular findings at follow-up. Multivariable logistic regression was used to determine the risk factors associated with ocular findings. RESULTS: 309 patients were seen for follow-up at 0.97 (0.69) [mean (SD)] years after neonatal intensive care unit (NICU) discharge. Strabismus was predicted by occipitofrontal circumference (OFC) z-score at NICU discharge (OR 0.61; 95% CI [0.42, 0.88]; p = 0.008), intraventricular haemorrhage (IVH) grade III or IV (OR 3.18; 95% CI [1.18, 8.54]; p = 0.02), and exclusive formula feeding at NICU discharge (OR 2.20; 95% CI [1.07, 4.53]; p = 0.03). Significant predictors of amblyopia were OFC z-score at discharge (OR 0.55; 95% CI [0.31, 0.96]; p = 0.03) and necrotising enterocolitis (NEC) (OR 6.94; 95% CI [1.38, 35.00]; p = 0.02). NEC was a significant risk factor for high refractive error (OR 7.27; 95% CI [1.39, 37.94]; p = 0.02). CONCLUSIONS: Among premature infants screened but not treated for ROP, severe IVH, NEC, low OFC z-score, and exclusive formula feeding at NICU discharge were risk factors for ocular morbidity. These findings affirm the value of ophthalmic follow-up for all ROP-screened infants, particularly those with the identified risk factors.


Subject(s)
Infant, Premature , Retinopathy of Prematurity , Strabismus , Humans , Retinopathy of Prematurity/diagnosis , Retinopathy of Prematurity/epidemiology , Risk Factors , Infant, Newborn , Retrospective Studies , Female , Male , Prevalence , Strabismus/diagnosis , Strabismus/epidemiology , Refractive Errors/diagnosis , Refractive Errors/physiopathology , Refractive Errors/epidemiology , Amblyopia/epidemiology , Amblyopia/diagnosis , Amblyopia/etiology , Cataract/epidemiology , Cataract/diagnosis , Neonatal Screening/methods , Follow-Up Studies , Gestational Age , Infant
16.
Ophthalmic Epidemiol ; 31(1): 62-69, 2024 Feb.
Article in English | MEDLINE | ID: mdl-36872562

ABSTRACT

PURPOSE: This study aimed to estimate the prevalence and main causes of blindness and visual impairment in population aged 50 years and older in Armenia using Rapid Assessment of Avoidable Blindness (RAAB) methodology. METHODS: The study team randomly selected 50 clusters (each consisting of 50 people) from all 11 regions of Armenia. Data on participants' demographics, presenting visual acuity, pinhole visual acuity, principal cause of presenting visual acuity, spectacle coverage, uncorrected refractive error (URE), and presbyopia were collected using the RAAB survey form. Four teams of trained eye care professionals completed data collection in 2019. RESULTS: Overall, 2,258 people of 50 years and older participated in the study. The age- and gender- adjusted prevalence of bilateral blindness, severe and moderate visual impairment were 1.5% (95% CI: 1.0-2.1), 1.6% (95% CI: 1.0-2.2) and 6.6% (95% CI: 5.5-7.7), respectively.The main causes of blindness were cataract (43.9%) and glaucoma (17.1%). About 54.6% and 35.3% of participants had URE and uncorrected presbyopia, respectively. The prevalence of bilateral blindness and functional low vision increased with age and was the highest in participants 80 years and older. CONCLUSION: The rate of bilateral blindness was comparable with findings from countries that share similar background and confirmed that untreated cataract was the main cause of blindness. Given that cataract blindness is avoidable, strategies should be developed aiming to further increase the volume and quality of cataract care in Armenia.


Subject(s)
Cataract , Presbyopia , Refractive Errors , Aged , Humans , Middle Aged , Armenia/epidemiology , Blindness/epidemiology , Blindness/etiology , Blindness/prevention & control , Cataract/complications , Cataract/epidemiology , Presbyopia/complications , Prevalence , Refractive Errors/complications , Refractive Errors/epidemiology , Surveys and Questionnaires , Vision Disorders/complications , Male , Female
17.
Ophthalmic Epidemiol ; 31(1): 70-77, 2024 Feb.
Article in English | MEDLINE | ID: mdl-36880784

ABSTRACT

PURPOSE: Our study compares the sensitivity, specificity and cost of visual acuity screening as performed by all class teachers (ACTs), selected teachers (STs) and vision technicians (VTs) in north Indian schools. METHODS: Prospective cluster randomized control studies are conducted in schools in a rural block and an urban-slum of north India. Consenting schools, with a minimum of 800 students aged 6 to 17 years, within a defined study region in both locations, were randomised into three arms: ACTs, STs or VTs. Teachers were trained to test visual acuity. Reduced vision was defined as unable to read equivalent of 20/30. Optometrists, who were masked to results of initial screening, examined all children. Costs were measured for all three arms. RESULTS: The number of students screened were 3410 in 9 ACT schools, 2999 in 9 ST schools and 3071 in 11 VT schools. Vision deficit was found in 214 (6.3%), 349 (11.6%) and 207 (6.7%), (p < .001) children in the ACT, ST and VT arms, respectively. The positive predictive value of VT screening for vision deficit (81.2%) was significantly higher than that of ACTs (42.5%) and STs (30.1%), (p < .001). VTs had significantly higher sensitivity of 93.3% and specificity of 98.7%, compared to ACTs (36.0% and 96.1%) and STs (44.3% and 91.2%). The cost of screening children with actual visual deficit by ACTs, STs and VTs, was found to be $9.35, $5.79 and $2.82 per child, respectively. CONCLUSION: Greater accuracy and lower cost favours school visual acuity screening by visual technicians in this setting, when they are available.


Subject(s)
Refractive Errors , Vision Screening , Child , Humans , Prospective Studies , Refractive Errors/diagnosis , Refractive Errors/epidemiology , Schools , Vision Screening/methods , Visual Acuity , Adolescent
18.
Ophthalmic Epidemiol ; 31(1): 46-54, 2024 Feb.
Article in English | MEDLINE | ID: mdl-37095711

ABSTRACT

PURPOSE: To investigate the prevalence, associated factors, and inter-eye differences of myopia and astigmatism in an adult Japanese population-based cohort. METHODS: A total of 4282 participants from the Tohoku Medical Megabank Organization Eye Study (ToMMo Eye Study) underwent comprehensive ocular examinations as well as extensive physiological tests and a lifestyle questionnaire. The spherical equivalent (SE) and cylinder power were obtained as refractive parameters. The age- and gender-stratified prevalences of high myopia (SE < -5D), myopia (SE < -0.5D), hyperopia (SE > 0.5D), astigmatism (cylinder power < -0.5D), and anisometropia (SE difference >1D) were calculated. Multivariable analyses were performed to identify associated factors for refractive error (RE). Distribution and associated factors of the inter-eye difference in RE were also investigated. RESULTS: The age-adjusted prevalence of high myopia, myopia, hyperopia, astigmatism, and anisometropia was 15.9%, 63.5%, 14.7%, 51.1%, and 14.7%, respectively. Both myopia and high myopia were more prevalent in the younger age group, while astigmatism was more prevalent in the older age group. Age, education, blood pressure, intraocular pressure, and corneal thickness are significantly associated with myopic refraction. Age, gender, intraocular pressure, and corneal thickness are correlated with astigmatism. Older age was associated with against-the-rule astigmatism. Older age, myopia, and longer education showed a significant correlation with large inter-eye differences in SERE. CONCLUSIONS: This study demonstrated the high prevalence of myopia in young Japanese, which may be caused by a generational shift. This study also confirmed the influence of age and education on both the prevalence and inter-eye differences of RE.


Subject(s)
Anisometropia , Astigmatism , Hyperopia , Myopia , Refractive Errors , Adult , Humans , Aged , Astigmatism/epidemiology , Prevalence , Hyperopia/epidemiology , Anisometropia/epidemiology , Japan/epidemiology , Refractive Errors/epidemiology , Myopia/epidemiology , Age Distribution
19.
Acta Ophthalmol ; 102(3): e346-e351, 2024 May.
Article in English | MEDLINE | ID: mdl-37775962

ABSTRACT

PURPOSE: To determine the frequency of potential non-strabismic accommodative-vergence anomalies (NSAVA) and investigate associations between NSAVA, refractive errors and age among children attending a paediatric ophthalmology clinic. METHODS: This study included children and adolescents aged 5-19 years attending an ophthalmology clinic with at least two follow-up visits. At their first visit, children had a comprehensive ophthalmic examination, including refractive error measurement by cycloplegic autorefraction and spectacles were prescribed if necessary. At the second visit, children had an examination of best-corrected visual acuity, convergence and accommodation to identify potential NSAVA. The relationship between age, sex, heterophoria and refractive error and potential NSAVA was assessed by a multivariable logistic regression model. RESULTS: A total of 384 children and adolescents were evaluated. Their mean age was 10.97 ± 3.07 years and 58.9% were females. Forty-two per cent of children failed the NSAVA tests and 34.1% had myopia (≤-0.50 D). Children who failed NSAVA tests self-reported a higher proportion of reading problems (73.7%) compared to those who passed the tests (26.3%; p < 0.001). Children with self-reported reading problems were more likely to have accommodative infacility (57.9%) compared with children without (42.1%; p < 0.001). Refractive error and age were not associated with failure in NSAVA tests (p > 0.05). CONCLUSIONS: NSAVA was a frequent cause of vision problems found in a sample of children from an ophthalmology paediatric clinic. Thus, further research is necessary to understand the potential of public health policies to prevent, refer, diagnose and treat those conditions.


Subject(s)
Ophthalmology , Presbyopia , Refractive Errors , Female , Adolescent , Humans , Child , Male , Visual Acuity , Vision, Binocular , Argentina/epidemiology , Refractive Errors/diagnosis , Refractive Errors/epidemiology , Accommodation, Ocular
20.
Am J Med Genet A ; 194(4): e63473, 2024 Apr.
Article in English | MEDLINE | ID: mdl-37964495

ABSTRACT

Ophthalmological conditions are underreported in patients with KBG syndrome, which is classically described as presenting with dental, developmental, intellectual, skeletal, and craniofacial abnormalities. This study analyzed the prevalence of four ophthalmological conditions (strabismus, astigmatism, myopia, hyperopia) in 43 patients with KBG syndrome carrying variants in ANKRD11 or deletions in 16q24.3 and compared it to the literature. Forty-three patients were recruited via self-referral or a private Facebook group hosted by the KBG Foundation, with 40 of them having pathogenic or likely pathogenic variants. Virtual interviews were conducted to collect a comprehensive medical history verified by medical records. From these records, data analysis was performed to calculate the prevalence of ophthalmological conditions. Out of the 40 participants with pathogenic or likely pathogenic variants, strabismus was reported in 9 (22.5%) participants, while astigmatism, myopia, and hyperopia were reported in 11 (27.5%), 6 (15.0%), and 8 (20.0%) participants, respectively. Other reported conditions include anisometropia, amblyopia, and nystagmus. When compared to the literature, the prevalence of strabismus and refractive errors is higher than other studies. However, more research is needed to determine if variants in ANKRD11 play a role in abnormal development of the visual system. In patients with established KBG syndrome, screening for misalignment or refractive errors should be done, as interventions in patients with these conditions can improve functioning and quality of life.


Subject(s)
Abnormalities, Multiple , Astigmatism , Bone Diseases, Developmental , Hyperopia , Intellectual Disability , Myopia , Refractive Errors , Strabismus , Tooth Abnormalities , Humans , Abnormalities, Multiple/diagnosis , Intellectual Disability/diagnosis , Bone Diseases, Developmental/diagnosis , Tooth Abnormalities/epidemiology , Tooth Abnormalities/genetics , Tooth Abnormalities/diagnosis , Facies , Hyperopia/epidemiology , Hyperopia/genetics , Quality of Life , Refractive Errors/epidemiology , Refractive Errors/genetics , Refractive Errors/diagnosis , Transcription Factors , Myopia/diagnosis , Myopia/epidemiology , Myopia/genetics
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