Effect of Using Myopia Prediction Algorithm on Myopia School-aged Children
Effect of Using Myopia Prediction Algorithm on Myopia School-aged Children's Eye Refraction in China: a Multi-center Randomized Control Trial
Study Overview
Status
Status
Conditions
Conditions
Intervention / Treatment
Intervention / Treatment
Detailed Description
Study Type
Study Type
Enrollment (Anticipated)
Enrollment
Phase
Phase
- Not Applicable
Contacts and Locations
Study Contact
Study Contact
- Name: Yahan Yang
- Phone Number: +8615521013933
- Email: yah.yang39@hotmail.com
Study Contact Backup
- Name: Haotian Lin
- Phone Number: +8613802793086
- Email: haot.lin@hotmail.com
Study Locations
-
-
Guangdong
-
Guangzhou, Guangdong, China, 510623
- Recruiting
- Zhongshan Ophthalmic Centre
-
Contact:
- Yahan Yang
- Phone Number: +86-15521013933
-
-
Participation Criteria
Eligibility Criteria
Eligibility Criteria
Ages Eligible for Study
Accepts Healthy Volunteers
Genders Eligible for Study
Description
Inclusion Criteria:
- Children aged 8-10
- Has the record of eye refraction examined in the past year, SER<-0.5D
- Current BCVA≥0.8, SER<-0.5D, Astigmatism less than 1.50 D, anisometropia less than 1.50 D
- Written informed consents provided
Exclusion Criteria:
- Definitive diagnosis of other diseases except for refractive error
- Previous eye surgery
- Previous usage of orthokeratology lenses and atropine
- Unwilling to participate in this trial
Study Plan
How is the study designed?
Design Details
- Primary Purpose: Other
- Allocation: Randomized
- Interventional Model: Parallel Assignment
- Masking: Single
Number of Arms
Arms and Interventions
Participant Group / ArmParticipant Group / Arm |
Intervention / TreatmentIntervention / Treatment |
|---|---|
|
No Intervention: Not using myopia prediction algorithm
After examination of visual acuity, eye refraction and biometrics, the examination results are shown to the children.
|
|
|
Experimental: Using myopia prediction algorithm
After examination of visual acuity, eye refraction and biometrics, the examination results are shown to the children.
Meanwhile, myopia prediction algorithm will be used to predict SER at 3 years.
|
Candidate predictors included age at examination, SER, and annual progression rate.
Using these predictors, the algorithm will be used to predict SER at 3 years.
|
What is the study measuring?
Primary Outcome Measures
Primary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Incidence of SER development of at least -1.0 dioptres (D)
Time Frame: up to 2 year
|
SER: spherical equivalent refraction, sphere + ½ 360 cylinder; SER development of at least -1.0 dioptres: SER2 - SER1≤-0.5D; SER1: SER at baseline; SER2: SER up to 2 year
|
up to 2 year
|
|
Incidence of SER development of at least -0.5 dioptres (D)
Time Frame: up to 1 year
|
SER: spherical equivalent refraction, sphere + ½ 360 cylinder; SER development of at least -0.5 dioptres: SER2 - SER1≤-0.5D; SER1: SER at baseline; SER2: SER up to 1 year
|
up to 1 year
|
Secondary Outcome Measures
Secondary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Changes in proportion of children using atropine
Time Frame: Up to 1 year
|
Changes in proportion of children using atropine will be calculated
|
Up to 1 year
|
|
Changes in proportion of children using orthokeratology lenses
Time Frame: Up to 1 year
|
Changes in proportion of children using orthokeratology lenses will be calculated
|
Up to 1 year
|
|
Changes in proportion of children using spectacles
Time Frame: Up to 1 year
|
Changes in proportion of children using spectacles will be calculated
|
Up to 1 year
|
|
Changes in child's average outdoor activity time per day
Time Frame: Up to 1 year
|
Changes in child's average outdoor activity time per day will be calculated
|
Up to 1 year
|
|
Changes in child's average screen time per day
Time Frame: Up to 1 year
|
Changes in child's average screen time per day will be calculated
|
Up to 1 year
|
|
Changes in SER \ and AL
Time Frame: Up to 1 year
|
Changes in SER \ and AL will be calculated; AL: axial length
|
Up to 1 year
|
|
Changes in SER \ and AL
Time Frame: Up to 2 year
|
Changes in SER \ and AL will be calculated; AL: axial length
|
Up to 2 year
|
|
Changes in proportion of children using atropine
Time Frame: Up to 2 year
|
Changes in proportion of children using atropine will be calculated
|
Up to 2 year
|
|
Changes in proportion of children using orthokeratology lenses
Time Frame: Up to 2 year
|
Changes in proportion of children using orthokeratology lenses will be calculated
|
Up to 2 year
|
|
Changes in proportion of children using spectacles
Time Frame: Up to 2 year
|
Changes in proportion of children using spectacles will be calculated
|
Up to 2 year
|
|
Changes in child's average outdoor activity time per day
Time Frame: Up to 2 year
|
Changes in child's average outdoor activity time per day will be calculated
|
Up to 2 year
|
|
Changes in child's average screen time per day
Time Frame: Up to 2 year
|
Changes in child's average screen time per day will be calculated
|
Up to 2 year
|
Collaborators and Investigators
Sponsor
Sponsor
Study record dates
Study Major Dates
Study Start (Actual)
Study Start
Primary Completion (Anticipated)
Primary Completion
Study Completion (Anticipated)
Study Completion
Study Registration Dates
First Submitted
First Submitted
First Submitted That Met QC Criteria
First Submitted That Met QC Criteria
First Posted (Actual)
First Posted
Study Record Updates
Last Update Posted (Actual)
Last Update Posted
Last Update Submitted That Met QC Criteria
Last Update Submitted That Met QC Criteria
Last Verified
Last Verified
More Information
Terms related to this study
Additional Relevant MeSH Terms
Other Study ID Numbers
Other Study ID Numbers
- CCPMOH2019-China-4
Drug and device information, study documents
Studies a U.S. FDA-regulated drug product
Studies a U.S. FDA-regulated device product
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