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Translation of Near Infrared Brain Imaging to Assess Children with Cerebral Palsy

机译:近红外脑成像技术评估儿童脑瘫的翻译

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摘要

Cerebral palsy (CP) is the most common motor disorder of central origin in childhood and affects at least 2 children per 1000 live births every year. Neuroimaging techniques are needed to study neuroplastic rearrangements in the human brain in vivo as a result of CP. Unfortunately, accurate imaging from currently available techniques often requires the patients' complete body confinement, steadiness and minimal noise for a long period of time, which limits the success rate to less than 50% for normal children and worse for CP-affected ones. In this work we show that functional near infrared (fNIR) imaging is robust to motion artifacts and has excellent potential as a sensitive diagnostic tool for this motor disorder. We have analyzed data from pediatric normal and CP patients performing finger-tapping and hand-waving motor cortex activation tasks. From these analyses we have identified both spatial and temporal metrics of NIR-based motor cortex activation patterns that can clearly distinguish between normal and CP patients. We also present data from additional patients where signal processing methods are applied to filter out concurrently recorded hemodynamic signals due to breathing and cardiac pulsation. It is shown that filtering can substantially improve the quality of activation data, thus enabling more accurate comparison of activation patterns between normal and CP-affected children.
机译:脑瘫(CP)是儿童期最常见的中枢性运动障碍,每年每1000例活产中至少有2名儿童受到影响。需要神经影像学技术来研究由于CP导致的人脑在体内的神经塑性重排。不幸的是,从现有技术中获得准确的影像常常需要患者在长时间内完全限制身体,保持稳定和最小程度的噪音,这将正常儿童的成功率限制在50%以下,而受CP影响的儿童的成功率则更低。在这项工作中,我们证明了功能性近红外(fNIR)成像对运动伪影具有鲁棒性,并且具有作为针对这种运动障碍的敏感诊断工具的出色潜力。我们分析了来自小儿正常人和CP患者的数据,这些患者执行了敲击和挥手运动皮层激活任务。通过这些分析,我们确定了基于NIR的运动皮层激活模式的时空指标,可以清楚地区分正常患者和CP患者。我们还提供了来自其他患者的数据,在这些患者中,由于呼吸和心脏搏动而采用信号处理方法来过滤同时记录的血液动力学信号。结果表明,过滤可以显着提高激活数据的质量,从而可以更准确地比较正常儿童和受CP影响的儿童之间的激活模式。

著录项

  • 来源
    《Photons and neurons》|2009年|718005.1-718005.9|共9页
  • 会议地点 San Jose CA(US)
  • 作者单位

    University of Texas at Arlington, Bioengineering Department, 501 West First Street, Arlington, TX, USA 76010;

    University of Texas at Arlington, Bioengineering Department, 501 West First Street, Arlington, TX, USA 76010;

    University of Texas at Arlington, Bioengineering Department, 501 West First Street, Arlington, TX, USA 76010;

    University of Texas at Arlington, Bioengineering Department, 501 West First Street, Arlington, TX, USA 76010;

    University of Texas at Arlington, Bioengineering Department, 501 West First Street, Arlington, TX, USA 76010;

    Scottish Rite Hospital for Children, Department of Neurology, 2222 Welborn Street, Dallas, TX, USA 75219;

    University of Texas at Arlington, Bioengineering Department, 501 West First Street, Arlington, TX, USA 76010;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    diffusion; near-infrared; brain imaging; motor cortex; activation studies; cerebral palsy;

    机译:扩散;近红外;脑成像运动皮层;激活研究;脑瘫;

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