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Recording characteristics of electrical impedance myography needle electrodes

机译:电阻界面检查电极的记录特性

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Objective: Neurologists and physiatrists need improved tools for the evaluation of skeletal muscle condition. Here we evaluate needle electrical impedance myography (EIM), a new minimally invasive approach to determine muscle status that could ultimately become a bedside tool for the assessment of neuromuscular disorders. Approach: We design and study the recording characteristics of tetrapolar EIM needle electrodes combining theory and finite-element model simulations. We then use these results to build and pilot in vivo an EIM needle electrode in the rat gastrocnemius muscle (n = 2). The dielectric properties of muscle are reported (mean +/- standard deviation). Results: The numerical simulations show that the contribution of subcutaneous fat and muscle tissues to needle EIM data is <3% and >97%, respectively, and the sensed volume is 0.70 cm(3). Apparent resistivity 277 +/- 30 Omega cm and relative permittivity (1 +/- 0.4) x 10(5) (dimensionless) measured at 10 kHz are in good agreement with in vivo dielectric properties reported in the literature. Significance: The results presented show the feasibility of measuring muscle impedivity in vivo using a needle electrode from 10 kHz to 1 MHz. The development of needle EIM technology can open up a new field of study in electrodiagnostic medicine, with potential applications to both disease diagnosis and biomarker assessment of therapy.
机译:目的:神经科医生和物理学家需要改进的骨骼肌条件评估工具。在这里,我们评估针电阻抗的幻图(EIM),一种新的微创方法,以确定肌肉状况最终成为床头柜的评估评估神经肌肉障碍。方法:我们设计和研究四极管EIM针电极的记录特性,组合理论和有限元模拟模拟。然后,我们使用这些结果在大鼠胃肠肌肉(n = 2)中体内构建和导频。报告了肌肉的介电性质(平均值+/-标准偏差)。结果:数值模拟表明皮下脂肪和肌肉组织对针EIM数据的贡献分别为<3%和> 97%,感测的体积为0.70厘米(3)。在10kHz下测量的表观电阻率277 +/- 30ωcm和相对介电常数(1 +/- 0.4)×10(5)(无量纲)与文献中报道的体内电介质性能吻合良好。显着性:提出的结果表明,使用从10kHz至1MHz的针电极测量体内肌肉阻抗的可行性。针EIM技术的开发可以开辟电源性医学的新研究领域,潜在应用于疾病诊断和生物标志物的治疗评估。

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