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Modeling Needle Stimulation of Denervated Muscle Fibers: Voltage–Distance Relations and Fiber Polarization Effects

机译:去神经肌肉纤维的针刺激模型:电压-距离关系和纤维极化效应

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摘要

A finite-element model of the human thigh was coupled with a 1-D compartment model to simulate the excitation of denervated muscle fibers with a needle electrode. For short electrode-fiber distances, the specific characteristics of the needle geometry determined the areas of lowest threshold values. With increasing distance, these areas shifted toward the needle's center of charge. Comparison of the 1-D model with a 3-D fiber model showed that the assumption of rotational symmetry underlying the 1-D model leads to an overestimation of thresholds. For a 40- mum-diameter fiber stimulated with 50 mus pulses at electrode-fiber distances between 50 mum and 1 mm, the 1-D/3-D threshold ratios were between 1.14 and 1.35 for the muscle fiber model, and between 1.11 and 1.17 for Hodgkin-Huxley membrane properties at 20 degC. For both membrane models, the deviation was more pronounced for large fiber diameters and short stimulation pulses. Qualitative results of the 1-D model like voltage-distance relations and predictions of spike initiation sites were correct.
机译:将人大腿的有限元模型与1-D隔室模型耦合,以模拟用针电极激发失神经的肌纤维的激发。对于较短的电极纤维距离,针头几何形状的特定特性决定了最低阈值的区域。随着距离的增加,这些区域移向针的电荷中心。一维模型与3-D纤维模型的比较表明,一维模型下面的旋转对称性假设导致对阈值的高估。对于以50微米脉冲在电极纤维距离介于50毫米和1毫米之间刺激的40毫米直径的纤维,肌肉纤维模型的1-D / 3-D阈值比在1.14和1.35之间,在1.11和1.35之间。 1.17在20摄氏度时的霍奇金-赫克斯利膜特性。对于两种膜模型,对于较大的纤维直径和较短的刺激脉冲,这种偏差更为明显。一维模型的定性结果(如电压-距离关系和尖峰起始位点的预测)是正确的。

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