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首页> 外文期刊>Human brain mapping >Cortical disconnection of the ipsilesional primary motor cortex is associated with gait speed and upper extremity motor impairment in chronic left hemispheric stroke
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Cortical disconnection of the ipsilesional primary motor cortex is associated with gait speed and upper extremity motor impairment in chronic left hemispheric stroke

机译:Ipsiles初级电机皮层的皮质断开与慢性左半球行程中的步态速度和上肢电机损伤相关联

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摘要

Abstract Advances in neuroimaging have enabled the mapping of white matter connections across the entire brain, allowing for a more thorough examination of the extent of white matter disconnection after stroke. To assess how cortical disconnection contributes to motor impairments, we examined the relationship between structural brain connectivity and upper and lower extremity motor function in individuals with chronic stroke. Forty‐three participants [mean age: 59.7 (±11.2) years; time poststroke: 64.4 (±58.8) months] underwent clinical motor assessments and MRI scanning. Nonparametric correlation analyses were performed to examine the relationship between structural connectivity amid a subsection of the motor network and upper/lower extremity motor function. Standard multiple linear regression analyses were performed to examine the relationship between cortical necrosis and disconnection of three main cortical areas of motor control [primary motor cortex (M1), premotor cortex (PMC), and supplementary motor area (SMA)] and motor function. Anatomical connectivity between ipsilesional M1/SMA and the (1) cerebral peduncle, (2) thalamus, and (3) red nucleus were significantly correlated with upper and lower extremity motor performance ( P ?≤?0.003). M1–M1 interhemispheric connectivity was also significantly correlated with gross manual dexterity of the affected upper extremity ( P ?=?0.001). Regression models with M1 lesion load and M1 disconnection (adjusted for time poststroke) explained a significant amount of variance in upper extremity motor performance ( R 2 ?=?0.36–0.46) and gait speed ( R 2 ?=?0.46), with M1 disconnection an independent predictor of motor performance. Cortical disconnection, especially of ipsilesional M1, could significantly contribute to variability seen in locomotor and upper extremity motor function and recovery in chronic stroke. Hum Brain Mapp 39:120–132, 2018 . ? 2017 Wiley Periodicals, Inc.
机译:摘要神经影像动物的进步使得整个大脑的白质连接映射,允许更彻底地检查中风后白质断线的程度。为了评估皮质断开有助于电机损伤的贡献,我们检查了慢性中风中个体的结构脑连接和上肢和下肢电机功能之间的关系。四十三位参与者[意思是年龄:59.7(±11.2)岁;时间搬家:64.4(±58.8)个月]接受临床电机评估和MRI扫描。执行非参数相关分析以检查结构连接之间的关系,在电动机网络和上/下极端电机功能的子部分中。进行标准多元线性回归分析以检查皮质坏死与电机控制三个主皮质区域的皮质坏死与断开关系[初级电机皮质(M1),热球皮层(PMC)和补充电机区域(SMA)]和电机功能。 Ipsiles M1 / SMA和(1)脑花序梗(2)丘脑和(3)红色核之间的解剖连接与上肢和下肢电动机性能显着相关(P?≤≤00.003)。 M1-M1间斜杆间连接也与受影响的上肢的毛细血管灵活性显着相关(P?= 0.001)。带有M1病变负荷和M1断开的回归模型(调整时间搬家)解释了上肢电机性能的大量方差(R 2?= 0.36-0.46)和步态速度(R 2?= 0.46),用M1断开电机性能的独立预测器。皮质断开,尤其是Ipsilesional M1,可以显着促进在运动中看到的可变性和上肢电动机功能和慢性冲程中的恢复。 HUM Brain MAPP 39:120-132,2018。还2017年Wiley期刊,Inc。

著录项

  • 来源
    《Human brain mapping 》 |2018年第1期| 共13页
  • 作者单位

    Department of Exercise SciencePhysical Therapy Program University of South Carolina 921 Assembly;

    Department of Communication Sciences and DisordersUniversity of South Carolina 915 Greene;

    Department of Exercise SciencePhysical Therapy Program University of South Carolina 921 Assembly;

    Department of Communication Sciences and DisordersUniversity of South Carolina 915 Greene;

    Department of PsychologyUniversity of South Carolina 1512 Pendleton StreetColumbia South Carolina;

    Department of NeurologyMedical University of South Carolina 96 Jonathan Lucas StreetCharleston;

    Department of Exercise SciencePhysical Therapy Program University of South Carolina 921 Assembly;

    Department of NeurologyMedical University of South Carolina 96 Jonathan Lucas StreetCharleston;

    Department of Exercise SciencePhysical Therapy Program University of South Carolina 921 Assembly;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学 ;
  • 关键词

    stroke; motor; diffusion tensor imaging; connectome; upper extremity; gait;

    机译:中风;电机;扩散张量成像;连接;上肢;步态;

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