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首页> 外文期刊>Journal of Neurophysiology >Cortical and subcortical alterations associated with precision visuomotor behavior in individuals with autism spectrum disorder
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Cortical and subcortical alterations associated with precision visuomotor behavior in individuals with autism spectrum disorder

机译:与自闭症谱系障碍的个体中具有精密游瓜瓜素行为相关的皮质和拟波动改变

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In addition to core deficits in social-communication abilities and repetitive behaviors and interests, many patients with autism spectrum disorder (ASD) experience developmental comorbidities, including sensorimotor issues. Sensorimotor issues are common in ASD and associated with more severe clinical symptoms. Importantly, sensorimotor behaviors are precisely quantifiable and highly translational, offering promising targets for neurophysiological studies of ASD. We used functional MRI to identify brain regions associated with sensorimotor behavior using a visually guided precision gripping task in individuals with ASD (n = 20) and age-, IQ-, and handedness-matched controls (n = 18). During visuomotor behavior, individuals with ASD showed greater force variability than controls. The blood oxygen level-dependent signal for multiple cortical and subcortical regions was associated with force variability, including motor and premotor cortex, posterior parietal cortex, extrastriate cortex, putamen, and cerebellum. Activation in the right premotor cortex scaled with sensorimotor variability in controls but not in ASD. Individuals with ASD showed greater activation than controls in left putamen and left cerebellar lobule VIIb, and activation in these regions was associated with more severe clinically rated symptoms of ASD. Together, these results suggest that greater sensorimotor variability in ASD is associated with altered cortical-striatal processes supporting action selection and cortical-cerebellar circuits involved in feedback-guided reactive adjustments of motor output. Our findings also indicate that atypical organization of visuomotor cortical circuits may result in heightened reliance on subcortical circuits typically dedicated to motor skill acquisition. Overall, these results provide new evidence that sensorimotor alterations in ASD involve aberrant cortical and subcortical organization that may contribute to key clinical issues in patients.
机译:除了社会沟通能力和重复行为和兴趣的核心赤字外,许多患有自闭症谱系障碍(ASD)的患者体验发育道,包括感觉运动问题。 SensorImotor问题在ASD中常见,与更严重的临床症状相关。重要的是,传感器行为正是可量化和高度的翻译,为ASD的神经生理学研究提供了有希望的目标。我们使用功能MRI来识别与SensionImotor行为相关的大脑区域,使用具有ASD(n = 20)和年龄,IQ级和匹配的控件(n = 18)的个体中的个人中的视觉引导精度抓握任务。在游体行为期间,具有ASD的个体显示出比对照的更大的力变性。多种皮质和皮质点区域的血氧水平依赖性信号与力变异性有关,包括电机和热球皮质,后部皮质皮层,枕骨皮质,腐败和小脑。在右侧Premotor Cortex中的激活缩放了控制器中的Sensorimotor可变性,但不在ASD中。具有ASD的个体表现出比左腐肉和左脑叶片VIIb的对照更大的活化,并且这些区域的激活与ASD的更严重的临床额定症状相关。这些结果表明,ASD中的更大的感觉电流变性与改变的皮质纹纹方法相关联,支持用于电动机输出的反馈引导的反应调整的动作选择和皮质小脑电路。我们的研究结果还表明,Visuomotor皮质电路的非典型组织可能导致依赖于通常专用于电动机技能的基本波动电路的依赖。总体而言,这些结果提供了新的证据,即ASD中的感官电池改变涉及可能有助于患者的关键临床问题的异常皮质和皮质组织。

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