Aix-Marseille Université, CNRS, LNC UMR 7291, Marseille, France; Aix-Marseille Université, CNRS, FR 3512, Marseille, France; Univ. Grenoble Alpes, CNRS, TIMC-IMAG, F-38000 Grenoble, France.
Aix-Marseille Université, CNRS, LNC UMR 7291, Marseille, France; Aix-Marseille Université, CNRS, FR 3512, Marseille, France.
Res Dev Disabil. 2018 May;76:25-34. doi: 10.1016/j.ridd.2018.03.001. Epub 2018 Mar 14.
Feedforward and online controls are two facets of predictive motor control from internal models, which is suspected to be impaired in learning disorders. We examined whether the feedforward component is affected in children (8-12 years) with developmental dyslexia (DD) and/or with developmental coordination disorder (DCD) compared to typically developing (TD) children.
Children underwent a bimanual unloading paradigm during which a load supported to one arm, the postural arm, was either unexpectedly unloaded by a computer or voluntary unloaded by the subject with the other arm.
All children showed a better stabilization (lower flexion) of the postural arm and an earlier inhibition of the arm flexors during voluntary unloading, indicating anticipation of unloading. Between-group comparisons of kinematics and electromyographic activity of the postural arm revealed that the difference during voluntary unloading was between DD-DCD children and the other groups, with the former showing a delayed inhibition of the flexor muscles.
Deficit of the feedforward component of motor control may particularly apply to comorbid subtypes, here the DD-DCD subtype. The development of a comprehensive framework for motor performance deficits in children with learning disorders will be achieved only by dissociating key components of motor prediction and focusing on subtypes and comorbidities.
前馈和在线控制是基于内部模型的预测性运动控制的两个方面,而预测性运动控制被怀疑在学习障碍中受到损害。我们研究了与正常发育(TD)儿童相比,发展性阅读障碍(DD)和/或发展性协调障碍(DCD)儿童的前馈成分是否受到影响。
儿童接受了双手卸载范式,在此过程中,一只手臂(姿势臂)上的负载被计算机意外卸载或由另一只手臂的主体自愿卸载。
所有儿童在自愿卸载时均表现出更好的姿势臂稳定性(较低的弯曲度)和更早的屈肌抑制,表明对卸载的预期。对姿势臂运动学和肌电图活动的组间比较表明,自愿卸载期间的差异在于 DD-DCD 儿童与其他组之间,前者的屈肌抑制延迟。
运动控制前馈成分的缺陷可能特别适用于共病亚型,即 DD-DCD 亚型。只有通过分离运动预测的关键成分并关注亚型和共病,才能为学习障碍儿童的运动表现缺陷建立一个全面的框架。