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适于动物肌肉组织局部电阻抗测量的无创电极间距研究 被引量:1

Suitable Noninvasive Electrode Distance for Local Electrical Impedance Measurement of Animal Muscle Tissue
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摘要 目的为了用无创测得的局部肌肉组织的电阻抗频谱评估失血性休克的程度,需要确定无创测量电极系统中电极间距这一个关键因素。方法参照大鼠股二头肌厚度数据,设计了3种兼具无创和有创测量的电极头,无创测量电极间距分别为1.83、2.67、3.5 mm,有创测量电极间距均为2.67 mm;以新鲜离体的10份猪里脊肉为测量对象,对测量阻抗模值进行欧氏距离分析及Cole-Cole曲线拟合,对比拟合误差。结果无创测量电极间距为2.67 mm时,无创测量的模值频谱更接近有创测量的模值频谱,而且该间距下无创测量数据拟合成Cole-Cole曲线的效果更好。结论以被测肌肉组织的厚度的1/6为无创电极间距时,测得的电阻抗频谱数据接近于等间距有创方式测得的电阻抗频谱数据。 Objective It is necessary to determine the electrode distance in noninvasive electrode system,so as to assess the degree of hemorrhagic shock with noninvasive measurement of the electrical impedance spectrum of local muscle tissue.Methods According to the thicknesses of biceps femoris of rats,three kinds of probes with both noninvasive and invasive electrode arrays were designed.The electrode distances of noninvasive measurements were1.83,2.67and3.5mm respectively,while the invasive measuring electrode distances were2.67mm.Ten fresh pork fillets were taken as the object for measurement.The differences of measurements were analyzed by Euclidean distance and the fitting errors were analyzed in the process of Cole-Cole curve fitting with the noninvasive measurements.Results The measured results were closer to the invasive measurements and the corresponding Cole-Cole curve fitting error was better when the electrode distance of noninvasive was2.67mm.Conclusion The measured impedance spectrum data is close to the invasively measured data with the same electrode distance when use1/6of the thickness of the measured muscle tissue as the non-invasive electrode distance.
作者 付钦鹏 种银保 赵安 赵鹏 潘文才 马结实 FU Qin-peng;CHONG Yin-bao;ZHAO An;ZHAO Peng;PAN Wen-cai;MA Jie-shi(Department of Medical Engineering, the Second Affiliated Hospital, the Third Military Medical University, Chongqing 400037, China)
出处 《中国医疗设备》 2017年第8期38-41,54,共5页 China Medical Devices
基金 国家自然科学基金(81401487) 重庆市重点研发项目(cstc2014yykf B10008)
关键词 无创 阻抗 电极间距 肌肉组织 失血性休克 noninvasive electrical impedance electrode distance muscle tissue hemorrhagic shock
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