首页> 外文会议>International conference on advancements of medicine and health care through technology >Estimating Activation of Denervated, Degenerated Muscle after Functional Electrical Stimulation with Magnetic Resonance Imaging
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Estimating Activation of Denervated, Degenerated Muscle after Functional Electrical Stimulation with Magnetic Resonance Imaging

机译:用磁共振成像估计功能性电刺激后去神经变性肌肉的激活

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摘要

FES of long-term denervated, degenerated human skeletal muscle has been shown to be a suitable method for improving a number of physiological parameters. The underlying mechanisms of activation of a denervated muscle fiber can be described with suitably modified and extended Hodgin-Huxley type models, coupled with 3D finite element models of the surrounding electrical field. Regions of activation within a muscle can be determined using a 3D computer model. However, simulation results have not yet been validated experimentally. During and immediately after exercise, muscle shows increased T2-relaxation times. It is thus possible to estimate muscle activation non-invasively and spatially resolved with the MRI method of T2-mapping, which was, therefore, chosen as a suitable validation approach. Six patients were scanned prior to FES training with a MSME-sequence at 3 Tesla and then asked to perform one of their regular daily training-sessions (leg extensions). Subjects were then repositioned in the MR-scanner and two to five post-exercise scans were recorded. Pre- and post exercise scans were co-registered and T2-parameter maps were calculated. ROIs were drawn manually around quadriceps femoris and its antagonists. In well trained patients, activation in the quadriceps was found to be considerably higher than in its antagonists. These experimental results will help further improve existing models of FES of denervated degenerated human skeletal muscle.
机译:长期失神经,退化的人类骨骼肌的FES已被证明是改善许多生理参数的合适方法。可以使用经过适当修改和扩展的Hodgin-Huxley类型模型,以及周围电场的3D有限元模型,来描述去神经肌肉纤维激活的基本机制。可以使用3D计算机模型确定肌肉内的激活区域。但是,仿真结果尚未通过实验验证。运动期间和刚运动后,肌肉显示出T2松弛时间增加。因此,可以使用T2映射的MRI方法以非侵入性和空间分辨的方式估计肌肉激活,因此被选作合适的验证方法。在FES训练之前,对3名特斯拉的MSME序列对6名患者进行了扫描,然后要求他们进行一次常规的日常训练(伸腿)。然后将受试者重新放置在MR扫描仪中,并记录2到5遍运动后扫描。运动前和运动后扫描被共注册,并计算了T2参数图。在股四头肌及其拮抗剂周围手动绘制ROI。在训练有素的患者中,发现四头肌的激活明显高于其拮抗剂。这些实验结果将有助于进一步改善失神经变性人骨骼肌FES的现有模型。

著录项

  • 来源
  • 会议地点 Cluj-Napoca(RO);Cluj-Napoca(RO)
  • 作者单位

    Center for Biomedical Engineering and Physics, Medical University of Vienna, Vienna, Austria,MR Centre of Excellence, Medical University of Vienna, Vienna, Austria;

    Center for Biomedical Engineering and Physics, Medical University of Vienna, Vienna, Austria,MR Centre of Excellence, Medical University of Vienna, Vienna, Austria;

    Center for Biomedical Engineering and Physics, Medical University of Vienna, Vienna, Austria;

    Ludwig Boltzmann Institute of Electrostimulation and Physical Rehabilitation, Department of Physical Medicine, Wilhelminenspital Vienna, Vienna, Austria;

    Ludwig Boltzmann Institute of Electrostimulation and Physical Rehabilitation, Department of Physical Medicine, Wilhelminenspital Vienna, Vienna, Austria;

    Center for Biomedical Engineering and Physics, Medical University of Vienna, Vienna, Austria;

    Center for Biomedical Engineering and Physics, Medical University of Vienna, Vienna, Austria,MR Centre of Excellence, Medical University of Vienna, Vienna, Austria;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 保健组织与事业(卫生事业管理);
  • 关键词

    fes; mri; t2-mapping; denervated muscle;

    机译:非斯mri; t2映射;失神经的肌肉;

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