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Examining the Association Between Physical Activity and Sleep Quality in Children With Autism Spectrum Disorder

Examining the Association Between Physical Activity and Sleep Quality in Children With Autism Spectrum Disorder Using Melatonin-mediated Mechanism Model: A Randomized Controlled Trial

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03348982
Enrollment
32
Registered
2017-11-21
Start date
2018-01-31
Completion date
2019-06-30
Last updated
2017-12-06

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Autism Spectrum Disorder, Physical Activity, Sleep Apnea

Keywords

Physical activity, Sleep, Children, Autism Spectrum Disorder, Melatonin

Brief summary

This study aims to investigate whether physical activity intervention would be effective to improve sleep quality in children with ASD, and investigate how physical activity impacts on sleep in children with ASD through melatonin-mediated mechanism model. A parallel-group randomized controlled trial comparing a 12-week jogging intervention and a control group receiving standard care in 32 children with ASD will be conducted. This study will monitor the changes of four sleep parameters (sleep onset latency; sleep efficiency, wake after sleep onset and sleep duration) through objective actigraphic assessment and parental sleep logs.

Detailed description

Sleep disturbance is commonly found in children with autism spectrum disorder (ASD) and is often accompanied with family distress. Disturbed sleep may exacerbate the core symptoms of ASD including stereotypic behaviors, social interactions, and health problems. Therefore, it is important to develop effective intervention strategies to ameliorate the sleep disturbance in children with ASD. Traditionally, behavioral interventions and supplemental melatonin medication are used to improve their sleep quality. However, poor sustainability of behavioral intervention effects and use of other medications (e.g. antidepressants and stimulants) that metabolize melatonin may degrade the effectiveness of these interventions. Alternatively, previous research supported physical activity intervention as an effective treatment on sleep disturbance for typically developing children who suffered from sleep disturbance. It is therefore natural to extend the study to examine whether such intervention is also effective in children with ASD. This study aims to investigate whether physical activity intervention would be effective to improve sleep quality in children with ASD. Moreover, how physical activity impacts on sleep in children with ASD through melatonin-mediated mechanism model will also be investigated. According to this mechanism model, it is suggested that physical activity could affect circadian rhythm through altering melatonin level. Melatonin is generally lower in ASD children than in their typically developing counterparts and supplemental melatonin medication is often used to treat the sleep disturbance in this population. This study is a parallel-group randomized controlled trial comparing a 12-week jogging intervention and a control group receiving standard care in 32 children with ASD. The changes of four sleep parameters (sleep onset latency; sleep efficiency, wake after sleep onset and sleep duration) through objective actigraphic assessment and parental sleep logs will be monitored. To measure melatonin level, all participants will be instructed to collect a 24-h urinary sample. 6-sulfatoxymelatonin, a creatinine-adjusted morning urinary melatonin and representative for melatonin level, will be measured from the collected urine sample. All the assessments will be carried out before the intervention (T1), immediately after the 12 weeks of physical activity intervention or regular treatment (T2), and 12 weeks after post-intervention (T3) for examination of sustained intervention effect. The findings of this proposed study can provide information on the mechanism pathway that physical activity impacts on sleep in children with ASD, which will contribute to the design of an effective intervention to improve sleep quality for children with ASD.

Interventions

BEHAVIORALJogging program

The intervention is a 12-week jogging program consisting of 24 sessions (two sessions per week, 30 min per session).

Sponsors

The Hong Kong Polytechnic University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
9 Years to 12 Years
Healthy volunteers
No

Inclusion criteria

* pre-puberty or early puberty as indicated by Tanner stage I or II ; * ASD diagnosis from a physician based on Diagnostic and Statistical Manual of Mental Disorders, 5th edition, (DSM-V)\[42\] * non-verbal IQ over 40 * the ability to follow instructions; * physically able to participate in the intervention * no additional regular participation in physical exercise other than school physical education classes for at least 6 months prior to the study * no concurrent medication for at least 6 months before the study or any prior melatonin treatment; * have sleep difficulties, including sleep onset insomnia and frequent and prolonged nightwaking and/or early morning awakenings reported by parents

Exclusion criteria

* with one or co-morbid psychiatric disorders as established by a structured interview based on DSM-V * with other medical conditions that limit their physical activity capacities (e.g., asthma, seizure, cardiac disease); * with a complex neurologic disorder (e.g., epilepsy, phenylketonuria, fragile X syndrome, tuberous sclerosis)

Design outcomes

Primary

MeasureTime frameDescription
Sleep onset latency12-weekSleep onset latency (length of time taken to fall asleep, expressed in minutes, SOL) will be objectively measured by a GT3X accelerometer.
Sleep efficiency12-weekSleep efficiency (actual sleep time divided by time in bed, expressed as a percent, SE) will be objectively measured by a GT3X accelerometer.
Wake after sleep onset12-weekWake after sleep onset (length of time they were awake after sleep onset, expressed in minutes, WASO) will be objectively measured by a GT3X accelerometer.
Sleep duration12-weeksleep duration (total sleep in hours and minutes, SD) will be objectively measured by a GT3X accelerometer.
Parental-assessed sleep quality12-weekParticipants' sleep patterns will be logged by their parents using Children's Sleep Habits Questionnaire (CSHQ), which is a validated 45-item parent-administered questionnaire to examine sleep patterns of young children. The total score ranged from 45 to 135.
Melatonin12-weekAll participants will be instructed to collect a 24-h urine sample. 6-sulfatoxymelatonin, a creatinine-adjusted morning urinary melatonin and representative of melatonin level, will be measured from the sample. The weekend has been chosen to allow the participants to stay at home for sample collection. All urine samples will be collected using 24-h urine bottles containing 0.1L of 0.5M hydrochloric acid as a preservative.

Contacts

Primary ContactAndy CY Tse, PhD
andytcy@eduhk.hk29488074
Backup ContactPaul H Lee, PhD
paul.h.lee@polyu.edu.hk34008275

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 24, 2026