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注意力缺陷多动障碍(ADHD)中运动缺陷的构成要素及可能的干预措施。

Components of Motor Deficiencies in ADHD and Possible Interventions.

机构信息

Virtual-Reality & NeuroCognition Lab, Technion - Israel Institute of Technology, Haifa, Israel.

Virtual-Reality & NeuroCognition Lab, Technion - Israel Institute of Technology, Haifa, Israel; Brain Research Lab, Department of Neurology, Ziv Medical Center, Safed, Israel.

出版信息

Neuroscience. 2018 May 15;378:34-53. doi: 10.1016/j.neuroscience.2016.05.040. Epub 2016 May 26.

Abstract

There is a growing body of evidence pointing at several types of motor abnormalities found in attention-deficit/hyperactivity disorder (ADHD). In this article we review findings stemming from different paradigms, and suggest an interweaving approach to the different stages involved in the motor regulation process. We start by reviewing various aspects of motor abnormalities found in ADHD and related brain mechanisms. Then, we classify reported motor impairments associated with ADHD, into four classes of motor stages: Attention to the task, motion preparation, motion execution and motion monitoring. Motor abnormalities and corresponding neural activations are analyzed in the context of each of the four identified motor patterns, along with the interactions among them and with other systems. Given the specifications and models of the role of the four motor impairments in ADHD, we ask what treatments correspond to the identified motor impairments. We analyze therapeutic interventions targeting motor difficulties most commonly experienced among individuals with ADHD; first, Neurofeedback training and EMG-biofeedback. As some of the identified components of attention, planning and monitoring have been shown to be linked to abnormal oscillation patterns in the brain, we examine neurofeedback interventions aimed to address these types of oscillations: Theta/beta frequency training and SCP neurofeedback targeted at elevating the CNV component. Additionally we discuss EMG-Biofeedback interventions targeted at feedback on motor activity. Further we review physical activity and motor interventions aimed at improving motor difficulties, associated with ADHD. These kinds of interventions are shown to be helpful not only in aspects of physical ability, but also in enhancing cognition and executive functioning.

摘要

越来越多的证据表明,注意力缺陷多动障碍(ADHD)存在多种类型的运动异常。本文综述了来自不同范式的研究结果,并提出了一种交织的方法来研究运动调节过程中涉及的不同阶段。我们首先回顾了 ADHD 中发现的各种运动异常及其相关的大脑机制。然后,我们将与 ADHD 相关的报告运动损伤分为四类运动阶段:任务注意、运动准备、运动执行和运动监测。我们在四个识别出的运动模式的背景下分析运动异常和相应的神经激活,以及它们之间的相互作用以及与其他系统的相互作用。鉴于这四个运动损伤在 ADHD 中的特点和模型,我们询问哪些治疗方法对应于识别出的运动损伤。我们分析了针对 ADHD 患者最常见的运动困难的治疗干预措施;首先,神经反馈训练和肌电图生物反馈。由于一些已确定的注意力、计划和监测成分与大脑中的异常振荡模式有关,我们研究了旨在解决这些类型的振荡的神经反馈干预措施:针对 theta/beta 频率训练和 SCP 神经反馈的 CNV 成分提升。此外,我们还讨论了针对运动活动的肌电图生物反馈干预措施。此外,我们还回顾了旨在改善与 ADHD 相关的运动困难的体育活动和运动干预措施。这些类型的干预不仅在身体能力方面有帮助,而且在提高认知和执行功能方面也有帮助。

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