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3D Sensitivity of 8-Electrode FIM through Experimental Study in a Phantom

机译:通过仿真实验研究8电极FIM的3D灵敏度

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Focused Impedance Method (FIM) is a relatively new technique developed in the Biomedical Physics Laboratory of Dhaka University which allows improved localization of a zone without much increase in the complexity of measurement. Three versions using 8, 6 and 4 electrodes respectively have been conceived and developed. FIM has potential for characterization of biological tissues at depths non-invasively placing electrodes on the skin surface at appropriate locations, leading to detection or diagnosis of diseases or disorders. The present work is an experimental study of the sensitivity of the 8-electrode FIM system at different depths and lateral positions inside a volume conductor with respect to the electrode-positions using a cubical phantom with saline. An object of different conductivity and of size smaller than the electrode separation was placed inside the phantom at different positions to measure the change of FIM value, called sensitivity in this work. The study verified the focusing effect at the central zone where the sensitivity remained high and almost constant laterally for a certain depth, falling sharply outside. At shallow depths, the sensitivity showed enhanced peaks under the electrodes which however, decreased fast with depth. The sensitivity falls off sharply with depth becoming almost constant at greater depths but with greatly reduced value. The sensitivity at off axis positions from the centre also reduced outside the focused zone. Slightly negative zones of sensitivity were observed at lateral positions far from the center of the electrodes, but the values were negligible. This work will help standardize the application of 8-electrode FIM for determination of impedance of organs inside the human body. DOI: http://dx.doi.org/10.3329/bjmp.v6i1.19759 Bangladesh Journal of Medical Physics Vol.6 No.1 2013 55-65
机译:聚焦阻抗法(FIM)是达卡大学生物医学物理实验室开发的一种相对较新的技术,可以在不增加测量复杂性的情况下改善区域的定位。已经设想和开发了分别使用8、6和4个电极的三种形式。 FIM具有潜力,可以在无创位置将电极无创地放置在皮肤表面适当位置的深度上表征生物组织,从而导致疾病或病症的检测或诊断。目前的工作是使用立方幻影用盐水在体积导体内部不同深度和横向位置对8电极FIM系统的灵敏度进行的实验研究。将具有不同电导率且尺寸小于电极间距的物体放置在体模中的不同位置处,以测量FIM值的变化,此工作称为灵敏度。这项研究证实了在中央区域的聚焦效果,该区域的灵敏度仍然很高,并且在一定深度处横向几乎恒定,而在外部急剧下降。在较浅的深度,灵敏度显示出电极下方的增强峰,但是随着深度的增加,峰会快速下降。灵敏度急剧下降,深度越大,深度越大,灵敏度几乎不变,但值却大大降低。距中心偏轴位置的灵敏度在聚焦区域之外也降低了。在远离电极中心的侧向位置观察到轻微的负敏感区,但该值可以忽略不计。这项工作将有助于标准化8电极FIM在确定人体内部器官阻抗方面的应用。 DOI:http://dx.doi.org/10.3329/bjmp.v6i1.19759孟加拉国医学物理学杂志2013年第6卷第1期55-65

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