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Completed

NCT Number: NCT05150223

The Effects of Functional Power Training in Children With Attention Deficit Hyperactivity Disorder

This study is aimed to investigate the effectiveness of functional power training on attention, gross and fine motor skill, participation and quality of life in children with attention deficit hyperactivity disorder (ADHD) by comparing traditional strength training and their healthy peers. In the literature, there are limited studies that investigate the effect of power exercise in children with ADHD. But there is no randomized controlled trial include power exercises which is designed to the National Strength and Conditioning Association (NSCA) criteria and investigate the effects on attention, gross and fine motor skill, participation and quality of life in children with ADHD. This study hypothesizes that power exercises could improve attention, gross and fine motor skill, participation, and quality of life better than traditional strength training in children with ADHD.

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Key information

Age range

6 year–12 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Akdeniz University

Antalya, Turkey (Türkiye)

About this study

Attention Deficit Hyperactivity Disorder is a neurodevelopmental disorder characterized by inattention, impulsivity, and hyperactivity. These core symptoms cause poor gross and fine motor skills. Recent critical review results suggest that motor performance not only consists of motor response activation. It also includes mental representation of activity, attention, memory, makes decisions, and control over preponderant responses. These findings support that ADHD symptoms could affect motor performance negatively. DSM-V (The Diagnostic and Statistical Manual of Mental Disorders, Fifth Edition) also specifies the relationship between ADHD symptoms and poor motor performance. DSM-V pointed out motor difficulties that occur in ADHD are caused by inattention and impulsivity rather than neurological origin. In the literature, Tseng et al. investigated ADHD symptom's negative effect on motor performance in 42 school-aged children with ADHD. Tseng et al.'s study was shown that inattention and impulsivity were determinative symptoms for motor difficulties. Because of the ADHD's symptoms' effect on the motor skill, children with ADHD have poor fine manual control, manual coordination, body coordination, strength, and agility when they are compared with health peers.

These motor difficulties affect the academic, social, and daily life of children with ADHD. They have many restrictions on participation of daily living activities, school, social and sport activities and have decreased quality of life scores. It is considered that these symptoms of ADHD related to catecholamine systems. Jeyanthi et al. suggest that exercises both directly and indirectly affects catecholamine systems. In the literature, there are many studies that was included different exercise interventions involving children with ADHD. Many of the studies were shown that exercise had positive effects on ADHD symptoms. However, there is not enough information about the type, duration, intensity, and frequency of appropriate exercises. Power exercises can be an appropriate approach given the previously reported problems in children with ADHD. This type of exercise shown positive effects on the other populations (CP). The aim of the study is to investigate the effect of power exercises on children with ADHD by comparing these effects with traditional strength training and their healthy peers.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • • age between 6 years and 12 years;
  • Diagnosed with Attention Deficit Hyperactivity Disorder (ADHD) by a child and adolescent health psychiatrist, regardless of subtype, according to DSM-V criteria
  • Have cognitive ability to follow instructions for assessment measures and exercise intervention

Exclusion criteria

  • • Children have any other psychiatric diagnosis like autism spectrum disorder, psychotic symptoms, depression, etc.
  • Children have any neurological or orthopedic disorders like head injury, cerebral palsy, epileptic seizure, visual and speech disorder.

Inclusion criteria

for Healthy Children:

  • Healthy children aged 6-12 years old
  • Children without a psychiatric and neurological diagnosis

Exclusion criteria

for Healthy Children:

  • Children got medical treatment for a neuropsychiatric disorder
  • Children whose parents or themselves refused to participate

Treatment and study plan

Traditional Strength Training

Other

traditional strength training (running, jumping forward over a barrier with one leg and two legs, heel-rise, push up and ball throw with load, bench press, and flexion-abduction-external rotation pattern with theraband). Participation in the traditional strength training group will complete these exercises with a load and without time limitations and speed.

Power Training

Other

progressive functional strength training protocol (running, jumping forward over a barrier with one leg and two legs, heel-rise, push up and ball throw with load, bench press, and flexion-abduction-external rotation pattern with theraband)

Primary outcomes

  1. Conners' Teacher Rating Scale (CTRS)

    Time frame: change from baseline to end of the 8 weeks

    CTRS is a reliable and valid 59-item teacher self-report form designed to identify children with ADHD and associated behavioral difficulties. Each item can be scored from 0 to 3; where 0 represents an item is not present and 3 represents an always or definitely present symptom.

  2. Bruininks-Oseretsky Test of Motor Proficiency-2 (BOT-2) to measure motor proficiency.

    Time frame: change from baseline to end of the 8 weeks

    Bruininks-Oseretsky Test of Motor Proficiency-2 (BOT-2) is norm referenced and designed to measure gross and fine motor skills in youth 4 to 21 years of age. Standard scores 40 are considered below average, whereas those >40 range from average to above average.

  3. Evaluation of muscle power of lower extremity

    Time frame: change from baseline to end of the 8 weeks

    Muscle Power Sprint Test (MPST) will be used to assess lower extremity muscle power.Peak power and Mean Power (watts) were also calculated and used as markers of anaerobic power in the MPST. Power output for each sprint was calculated using body mass and running times, where power = (body mass Å~ distance2)/time. Peak power was defined as the highest calculated power, while Mean Power was defined as average power over the 6 runs.

  4. Evaluation of muscle power of upper extremity

    Time frame: change from baseline to end of the 8 weeks

    Throw Basketball Test will be used to assess upper extremity muscle power. The distance from the starting line to where the ball landed was recorded in centimetres.

Secondary outcomes

  1. The 30 seconds Repetition Maximum test

    Time frame: change from baseline to end of the 8 weeks

    The 30 seconds Repetition Maximum test was used to assess functional muscle strength of the lower extremities. The three closed kinetic chain exercises of lateral step-up test, Sit To Stand and attain stand through half knee were used. The children were instructed to perform as many repetitions as possible in 30 seconds for each of the exercises. Lateral step-up and attain stand through half knee were evaluated bilaterally. The repetition maximum for each side was used to calculate total scores for the left and right side and thus five final scores were obtained.

  2. walking speed

    Time frame: change from baseline to end of the 8 weeks

    1 Minute Walk Test (1 MWT) will be used to assess walking speed.

  3. Evaluation of participation

    Time frame: change from baseline to end of the 8 weeks

    Participation and Environment Measurement Child & Youth (PEM-CY) is a parent-report questionnaire to assess participation and environment factors in the home, at school and within community Settings. The participation sections included 10 activities in the home setting, five activities in the school setting and 10 in the community setting. For each activity, parents are asked to determine the participation frequency (how frequently has the child participated with eight options: daily to never), participation involvement (how involved the child is while participating the activity rated on a five-point scale: very involved to minimally involved) and whether change is desired (do the parents want to see change in the child's participation in this type of activity: no or yes, with 5 different types of change).

  4. Evaluation of quality of life

    Time frame: change from baseline to end of the 8 weeks

    The Pediatric Quality of Life Inventory (PEDS-QL) is a generic health related quality of life measure consisting of 4 core scales, physical function (8 items), emotional function (5 items), social function (5 items) and school function (5 items) that is intended for use in healthy and patient populations. Respondents are asked to recall the last month and indicate how frequently - from never to almost always - they have experienced specific phenomena. Item responses (0-100) are averaged to form total and core scores; higher scores indicate higher functioning.

Sponsors and collaborators

Lead sponsor

Akdeniz University

Other

Collaborators

  • Antalya Training and Research Hospital

Registry information

Official study title

The Effects of Functional Power Training on Attention, Gross and Fine Motor Skills, Participation and Quality of Life in Children With Attention Deficit Hyperactivity Disorder

Important dates

Study start
2021
Primary completion
2022
Study completion
2022
First posted
Dec 9, 2021
Registry last updated
Jun 30, 2022

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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