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Functional Vision and Quality of Life in a Modern Society - With Emphasis on Myopia and Cerebral Visual Impairment Among Youth

2026年8月27日 更新者:Region Örebro County

Society has become increasingly digital, and many everyday services have been replaced by digital self-service solutions. This puts greater demands on our vision and our ability to interpret what we see. At the same time, the number of children with nearsightedness (myopia) has increased rapidly. In some parts of Asia, as many as 60-70% of students in seventh grade are nearsighted, and a similar trend may develop in Europe.

Nearsightedness is becoming a growing challenge in pediatric eye care. High myopia can lead to complications that require early detection and prevention. There are now several ways to slow down its progression, such as special contact lenses, glasses, and eye drops. However, the scientific evidence for these treatments varies, and there are currently no national or Nordic guidelines on how to use them. In addition, myopia may have a major impact on children's quality of life.

Currently, there is no validated Swedish questionnaire that measures vision related quality of life across all age groups in children and adolescents. To address this, researchers in the United States developed the Pediatric Eye Questionnaire (PedEyeQ) in 2019. It is already available in English and Spanish and takes into account both the child's and the parent's perspectives on vision and daily life.

The aim of this study is to translate, culturally adapt and test the PedEyeQ in Swedish children and adolescents, and to investigate how common refractive errors, especially nearsightedness - are today compared to 20-30 years ago.

The study will include 300 healthy children and adolescents aged 0-17 years, divided into three age groups: 0-4 years, 5-11 years, and 12-17 years. Participants will be recruited through child health centers, preschools, and schools in the Örebro region.

All participants will visit the eye clinic for a detailed eye examination, including:

  • Testing distance and near visual acuity
  • Measuring eye refraction (with and without eye drops that temporarily relax the eye's focusing muscles)
  • Imaging the retina using Optical Coherence Tomography (OCT)
  • Measuring eye length and corneal shape
  • Checking eye pressure and contrast sensitivity

Children and parents will also answer questions about how the child's vision affects everyday life and wellbeing. For the youngest children (0-4 years), only parents will answer the questions.

The PedEyeQ will be translated into Swedish following the International Society for Pharmacoeconomics and Outcome Research (ISPOR) guidelines to make sure it is culturally relevant and easy to understand. The Swedish version will then be tested to ensure it is accurate and reliable.

All information collected in the study will be stored securely and anonymously. The results will also be compared with data from a similar cohort conducted in the 1990s to see if vision problems have become more common over time.

This project will provide new knowledge about children's vision and quality of life in Sweden. A validated Swedish version of the PedEyeQ can be used both in healthcare and research to better understand how vision affects children's daily lives. The study will also offer updated information on the frequency of refractive errors among Swedish children and adolescents - knowledge that is essential for developing preventive strategies and improving eye care for the future.

調査の概要

詳細な説明

Society has undergone extensive digitalization, in which many service functions have been replaced by digital self-service solutions. This development requires a good visual function and on the ability to interpret visual information. Concurrently, there has been a marked increase in nearsightedness (myopia) among children. In parts of Asia, 60-70% of students in seventh grade are myopic, and a similar trend may emerge in Europe.

The increase of myopia might become major challenge within pediatric ophthalmology. High myopia can lead to vision-related complications that require early diagnosis and preventive measures. Preventive interventions-such as specialized contact lenses, spectacle designs, and pharmacological treatments as for example low-dose atropine, are now available on the market. However, the scientific evidence supporting these methods varies, and there is currently no national or Nordic consensus regarding their implementation. Furthermore the condition may have substantial implications for affected children's quality of life.

At present, there is no validated Swedish-language instrument for assessing vision-related quality of life in children and adolescents that encompasses all age groups, despite the widely recognized importance of such measures from both a Patient-Reported Outcome Measure (PROM) and Patient-Reported Experience Measure (PREM) perspective. A new questionnaire, the Paediatric Eye Questionnaire (PedEyeQ) was developed in the United States in 2019 for children and adolescents aged 0-17 years. Since its introduction, it has been used in English and subsequently translated into Spanish. The questionnaire comprises four domains measuring different aspects of vision-related quality of life, with each domain consisting of ten questions. To achieve a comprehensive understanding, the questionnaire incorporates both the child's and the parent's perspectives, and it includes separate age-appropriate versions for different developmental stages.

The aim of this study is to validate the PedEyeQ on a healthy Swedish cohort and to study the prevalence and changes in the amount of refractive errors in the same cohort and compare them to another healthy cohort investigated two decades ago.

Validation of PedEyeQ: We intend to translate the PedEyeQ into Swedish and validate the instrument in a cohort of healthy children and adolescents born in Sweden. The study group will consist of 300 participants aged 0-17 years, divided into the following age-based subgroups corresponding to the PedEyeQ versions: 0-4 years, 5-11 years, and 12-17 years, with 100 participants in each group. Efforts will be made to ensure that sex distribution, ethnicity, socioeconomic status, and birth parameters reflect those of the general population. Recruitment will primarily take place through child healthcare centers, preschools, and schools in Örebro and surrounding areas.

Participants will be invited to the ophthalmology clinic for a comprehensive examination, including: assessment of distance and near visual acuity, optical coherence tomography (OCT) to document retinal structure, PedEyeQ for assessment of vision-related quality of life, and the Pediatric Quality of Life Inventory (PedsQL) for assessment of general quality of life.

For children aged 0-4 years, only parents will complete the quality-of-life assessment. In the older groups, both the child and the parents will complete the questionnaires independently, allowing for comparison between the two perspectives.

The validation process will follow the International Society for Pharmacoeconomics and Outcome Research (ISPOR) recommendations for the translation and cultural adaptation of questionnaires. The original American PedEyeQ will be translated using a forward-backward translation procedure. The forward translation from English to Swedish will be carried out by a physician with strong subject knowledge and proficiency in both languages. The translation will be reviewed and proofread by an expert panel consisting of the principal supervisor and co-supervisors. The finalized Swedish version will then be back-translated into English. Emphasis during translation will be placed on conceptual and cultural equivalence, rather than literal translation. The research team will discuss any discrepancies between the original and back-translated versions to establish a final Swedish version of the instrument.

The Swedish questionnaire will then be tested in the described healthy study population. To ensure that participants can understand and adequately respond to the items, all participants will take part in a cognitive interview regarding the questionnaire. Following data collection, psychometric analyses will be conducted to evaluate validity, reliability, reproducibility, responsiveness, and factor structure.

Prevalence of refractive errors - The cohort described above will be recruited as previously outlined. In addition to completing the questionnaires, all participating children will undergo a comprehensive ophthalmological examination according to a standardized protocol, which includes measurements of several factors influencing ocular refraction.

The examination will include: Assessment of distance and near visual acuity, autorefractor measurements both with and without cycloplegia (meaning after administration of dilating eye drops to temporarily suspend accommodation and obtain accurate refraction values), Optical Coherence Tomography (OCT) to measure retinal thickness and to detect potential pathology such as edema, deposits, or thinning, Axial length measurement, non-invasive corneal mapping of corneal thickness, curvature, and refractive power using Pentacam, measurement of intraocular pressure using a non-contact, non-anesthetic method, and assessment of contrast sensitivity.

All collected data will be stored in a dedicated, pseudonymized research database (FoU database). Descriptive analyses will be performed to determine the prevalence of refractive errors within the study population. The cohort will also be compared to a corresponding reference group examined during the 1990s, in order to assess potential temporal changes in the prevalence of refractive errors among children and adolescents.

For statistical analysis, the Mann-Whitney U test will be used to compare continuous variables, while Fisher's exact test and the Chi-square test will be applied for comparisons of dichotomous variables. Regression analyses will be conducted to explore associations between risk factors and myopia, as well as relationships between myopia and quality of life.

Furthermore, the described cohort will serve as a reference population, allowing for the extraction of age- and sex-matched control groups for future pediatric ophthalmological studies.

研究の種類

観察的

入学 (推定)

300

連絡先と場所

このセクションには、調査を実施する担当者の連絡先の詳細と、この調査が実施されている場所に関する情報が記載されています。

研究連絡先

研究場所

参加基準

研究者は、適格基準と呼ばれる特定の説明に適合する人を探します。これらの基準のいくつかの例は、人の一般的な健康状態または以前の治療です。

適格基準

就学可能な年齢

  • 子

健康ボランティアの受け入れ

はい

サンプリング方法

確率サンプル

調査対象母集団

The study group will be selected from randomised preschools, and schools in Örebro and surrounding areas and we aim to collect a cohort as equal as possible compared to health children in general. Efforts will be made to ensure that sex distribution, ethnicity, socioeconomic status, and birth parameters reflect those of the general population.

説明

Inclusion Criteria:

  • Healthy children

Exclusion Criteria:

  • Children with ophthalmological diagnosis followed frequently by the ophthalmological clinic

研究計画

このセクションでは、研究がどのように設計され、研究が何を測定しているかなど、研究計画の詳細を提供します。

研究はどのように設計されていますか?

デザインの詳細

コホートと介入

グループ/コホート
介入・治療
Healthy children 0-17 years
The study group will consist of 300 participants aged 0-17 years, divided into the following age-based subgroups corresponding to the PedEyeQ versions: 0-4 years, 5-11 years, and 12-17 years, with 100 participants in each group. Efforts will be made to ensure that sex distribution, ethnicity, socioeconomic status, and birth parameters reflect those of the general population. Recruitment will primarily take place through child health centers, preschools, and schools in Örebro and surrounding areas.

The examination will include: Assessment of distance and near visual acuity, Autorefraction measurements both with and without cycloplegia (i.e., after administration of dilating eye drops to temporarily suspend accommodation and obtain accurate refraction values), Optical Coherence Tomography (OCT) to measure retinal thickness and to detect potential pathology such as edema, deposits, or thinning, Axial length measurement, Non-invasive corneal mapping of corneal thickness, curvature, and refractive power using Pentacam,Measurement of intraocular pressure using a non-contact, non-anesthetic method, and Assessment of contrast sensitivity.

It will also include questionnaires as the PedEyeQ described earlier, the PedQoL.

この研究は何を測定していますか?

主要な結果の測定

結果測定
時間枠
Prevalence of refractive errors
時間枠:1 day
1 day

協力者と研究者

ここでは、この調査に関係する人々や組織を見つけることができます。

出版物と役立つリンク

研究に関する情報を入力する責任者は、自発的にこれらの出版物を提供します。これらは、研究に関連するあらゆるものに関するものである可能性があります。

研究記録日

これらの日付は、ClinicalTrials.gov への研究記録と要約結果の提出の進捗状況を追跡します。研究記録と報告された結果は、国立医学図書館 (NLM) によって審査され、公開 Web サイトに掲載される前に、特定の品質管理基準を満たしていることが確認されます。

主要日程の研究

研究開始 (実際)

2024年10月27日

一次修了 (推定)

2027年5月30日

研究の完了 (推定)

2029年5月30日

試験登録日

最初に提出

2026年6月11日

QC基準を満たした最初の提出物

2026年6月11日

最初の投稿 (実際)

2026年6月17日

学習記録の更新

投稿された最後の更新 (実際)

2026年9月1日

QC基準を満たした最後の更新が送信されました

2026年8月27日

最終確認日

2025年10月1日

詳しくは

本研究に関する用語

追加の関連 MeSH 用語

その他の研究ID番号

  • Region Örebro County

医薬品およびデバイス情報、研究文書

米国FDA規制医薬品の研究

いいえ

米国FDA規制機器製品の研究

いいえ

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