Free and bound sodium identification by skin dielectric properties separation algorithm of bioelectrical impedance spectroscopy (spa-BIS) in human skin model

人体皮肤 电介质 材料科学 介电谱 生物医学工程 生物电阻抗分析 人造皮肤 算法 分析化学(期刊) 化学 电极 色谱法 数学 光电子学 医学 病理 生物 遗传学 电化学 物理化学 冶金 体质指数
作者
Kiagus Aufa Ibrahim,Ridwan Wicaksono,Marlin Ramadhan Baidillah,Koichi Ito,Masahiro Takei
出处
期刊:Biomedical Physics & Engineering Express [IOP Publishing]
卷期号:9 (5): 055010-055010 被引量:1
标识
DOI:10.1088/2057-1976/ace7d8
摘要

Free and bound sodium in human skin models have been identified by two proposals: skin's phantom fabrication and skin's dielectric properties separation algorithm of bioelectrical impedance spectroscopy (spa-BIS). Thespa-BIS consist of conductivity-permittivity separation, contact impedance compensation, and a correlation score algorithm based on the vessel with a bipolar electrode. The skin phantom fabrication comprises a recipe combination with temperature-controlled protocol and sodium molarity calculation. In experiments, the human skin models are created to mimic the electrical properties of skin under1MHzwith several different sodium molarities. Based on five types of human skin models with five samples of each group, the free sodium type conductivity and concentration resultsR2=0.9903-following a linear trendline of concentration change in skin tissues theorems with the fRequency range from1kHzto1MHz,while the bound sodium type resultsR2=0.9061-.Thespa-BIS compensate7-16Ωof vessel contact impedance. The dielectric properties of each type have been extracted with less than 10% of the average standard deviation, which is considered an accurate identification method of dermis dielectric properties. The algorithm successfully identifies sodium type: free sodium has a negative, and bound sodium has a positive correlation score trend. As an additional discussion, the different time-dependent effects, the different water content, and different agar content analyses have been provided in this study. As a robust analysis method, thespa-BIS has a prominent performance to replace a23Na-MRI in terms of free and bound sodium identification.
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