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Completed

NCT Number: NCT03453983

Does tDCS Improve Motor Learning in Children With DCD?

Transcrainial direct current stimulation (tDCS) has become increasingly popular over the past decade. tDCS is a safe and well-studied form of non-invasive brain stimulation. The purpose of the current study is to see if tDCS can improve motor function in children with developmental coordination disorder.

Non-invasive brain stimulation is shown to positively affect motor performance in children with neurodevelopmental and/or neurological conditions. For example, tDCS improves hand motor function in children with paediatric stroke and cerebral palsy. The benefits of tDCS in developmental coordination disorder is unknown. The current study will assess children's motor performance before and after tDCS intervention.

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Key information

Age range

10 year–15 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Child Development Center, Owerko Centre Alberta Children's Hospital

Calgary, Alberta, T2N 1N4, Canada

About this study

Developmental Coordination Disorder (DCD) is a chronic neurodevelopmental disorder characterized by impairments in coordinated motor abilities. Affected individuals show differences in brain maturation and early motor development, negatively impacting performance on everyday living tasks such as writing and participation in sports. Currently, there are few evidence-based therapeutic interventions for individuals diagnosed with DCD, and most are time consuming with modest effect sizes [1]. There is a pressing need to develop efficient, effective interventions to improve motor performance in children with DCD, as impairments often last into adulthood and can negatively impact long-term physical and mental health as well as social and academic abilities.

The ability to enhance endogenous motor learning systems with non-invasive brain stimulation is now well established in adults [2, 3]. Research studies have demonstrated the same potential in the developing brain. For instance, tDCS can significantly enhance the acquisition of motor skills over a few brief training sessions in typically developing school aged children, with lasting effects [4]. Recent clinical trials in children with cerebral palsy and neonatal stroke also suggest therapeutic efficacy in children with motor impairment [5, 6, 7]. However, the use of tDCS in pediatric populations is limited [8]. As tDCS has been associated with improved motor outcomes in adults and children with motor impairment, it may be an effective intervention for children with DCD. This however has not been investigated.

Research Questions & Objectives:

The current study will investigate the therapeutic benefits of tDCS in adolescents with DCD. The primary aim is to determine changes in motor skill acquisition and learning during a skill-training paradigm that is paired with anodal tDCS or sham tDCS. We hypothesize that when compared to the sham tDCS group, the treatment tDCS group will show enhanced motor learning on tests of motor functioning.

Secondarily we will also examine sensorimotor changes following tDCS intervention and pediatric brain stimulation safety/tolerability.

Methods:

A randomized, sham controlled clinical trial including a final sample of 30 school aged children diagnosed with DCD will be conducted. The current study will be using a well-supported stimulation protocol, utilized in children and adolescents in the absence of adverse side effects.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • Diagnosed and documented DCD (including individuals with additional diagnoses of attention and/or learning disorders)
  • Aged 10 to 15 years
  • Right Handed

Exclusion criteria

  • Presence of implanted electrical devices, metallic implants, and/or irremovable metal objects (i.e., cardiac pacemakers, braces etc.)
  • Pregnancy or possibility of pregnancy
  • Diagnosed with a neuropsychiatric disorder such as autism spectrum disorder or chronic medical condition such as cerebral palsy or epilepsy
  • Taking prescribed medications

Treatment and study plan

Transcrainial Direct Current Stimulation (tDCS)

Device

Transcranial direct current stimulation (tDCS) is a safe non-invasive form of brain stimulation, which modulates, through the application of weak direct current, cortical excitability. The applied subthreshold current passes through two externally placed electrodes, an anode and cathode.

Primary outcomes

  1. Purdue Pegborad Test (PPT)

    Time frame: 20 minutes

    The PPT is a valid measure of fine motor coordination, hand dexterity, and motor learning skills, which consists of 4 subtests: left hand peg placement [PPTL], right hand peg placement [PPTR], bimanual peg placement [PPTLR], and bimanual assembly [PPTA]. The PPT peg placement subtests involve placing as many pins as possible into a pegboard during a 30 second interval. The total number of pegs, or pairs of pegs, placed are counted and scored. The PPT assembly subtest involved building as many copies of a demonstration structure using pins, pegs, and washers within a 60 second time period.

Secondary outcomes

  1. Jebsen-Taylor Test of Hand Function (JTT)

    Time frame: 20 minutes

    The JTT is an upper extremity motor assessment aimed at testing practical everyday living skills, such as writing, picking up coins, and moving objects. Left and right hands are tested independently, and scores for each hand are obtained through recording task completion time.

  2. Serial Reaction Time Task (SRTT)

    Time frame: 20 minutes

    The SRTT is a measure of motor learning skills. Participants are cued on a computer monitor to press the indicated letter on the keyboard. Participants complete this task over eight blocks of trials, each consisting of 96 cued key commands.

Other outcomes

  1. KINARM

    Time frame: 45 minutes

    Sensorimotor changes will be measured between baseline, post-training, and 6 week follow-up using the Kinesiological Instrument for Normal and Altered Reaching Movements (KINARM, BKIN Technologies Ltd, Ontario, Canada). The KINARM robot is a valid and reliable tool that can be used to measure children's proprioceptive, sensorimotor, visuomotor and motor decision/control abilities.

Sponsors and collaborators

Lead sponsor

University of Calgary

Other

Registry information

Official study title

Transcranial Direct Current Stimulation (tDCS): A Therapeutic Intervention for Motor Impairments in Children With Developmental Coordination Disorder (DCD).

Important dates

Study start
2018
Primary completion
2019
Study completion
2019
First posted
Mar 5, 2018
Registry last updated
Mar 25, 2020

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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