首页> 外文期刊>European Journal of Translational Myology >Simulation of the electrical field in equine larynx to optimize functional electrical stimulation in denervated musculus cricoarythenoideus dorsalis
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Simulation of the electrical field in equine larynx to optimize functional electrical stimulation in denervated musculus cricoarythenoideus dorsalis

机译:模拟马喉喉神经以优化神经支配的小尾背侧肌的功能性电刺激

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Distribution of the electrical field is very important to activate muscle and nerve cells properly. One therapeutic method to treat Recurrent Laryngeal Neuropathy (RLN) in horses can be performed by Functional Electrical Stimulation (FES). Current method to optimize the stimulation effect is to use implanted quadripolar electrodes to the musculus cricoarythenoideus dorsalis (CAD) and testing electrode configuration until best possible optimum is reached. For better understanding and finding of maximum possible activation of CAD a simulation model of the actual entire setting is currently in development. Therefore the geometric model is built from CT-data of a dissected larynx containing the quadripolar electrodes as well as fiducials for later data registration. The geometric model is the basis for a finite difference method containing of voxels with corresponding electrical conductivity of the different types of tissue due to threshold segmentation of the CT-data. Model validation can be done by the measurement of the 3D electrical potential distribution of a larynx positioned in an electrolytic tray. Finally, measured and calculated results have to be compared as well as further investigated. Preliminary results show, that changes of electrode as well as conductivity configuration leads to significant different voltage distributions and can be well presented by equipotential lines superimposed CT-slices - a Matlab graphical user interface visualizes the results in freely selectable slices of the 3D geometry. Voltage distribution along theoretically estimated fiber paths could be calculated as well as visualized. For further calculation of nerve or denervated muscle fiber activation and its optimization, real fiber paths have to be defined and referenced to the potential- and the CT-data.
机译:电场的分布对于正确激活肌肉和神经细胞非常重要。可以通过功能性电刺激(FES)执行一种治疗马匹复发性喉神经病(RLN)的治疗方法。当前优化刺激效果的方法是将植入的四极电极用于背阔肌(CAD)并测试电极配置,直到达到最佳可能。为了更好地理解和发现CAD的最大可能激活,目前正在开发实际整个设置的仿真模型。因此,从包含四极电极以及基准的解剖喉部的CT数据建立几何模型,以便以后进行数据记录。几何模型是包含体素的有限差分方法的基础,该体素由于CT数据的阈值分割而具有不同类型组织的相应电导率。可以通过测量位于电解槽中的喉部的3D电势分布来完成模型验证。最后,必须对测量和计算的结果进行比较以及进一步研究。初步结果表明,电极的变化以及电导率配置会导致明显不同的电压分布,并且可以通过等电位线叠加CT切片很好地呈现-Matlab图形用户界面将结果可视化为可自由选择的3D几何形状的切片。沿理论上估计的光纤路径的电压分布可以计算并可视化。为了进一步计算神经或失神经的肌纤维激活及其优化,必须定义真实的纤维路径并参考电势和CT数据。

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