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Modelling Dynamically Re-Sizeable Electrodes (DRE) for Targeted Transcutaneous Measurements in Impedance Plethysmography

机译:对阻抗体积描绘的有针对性的经皮测量进行模拟的模拟动态可重新达相电极(DRE)

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Impedance plethysmography of extremities typically involves band electrodes around limbs to monitor changes in blood volume. This often causes monitored blood variations to only generate minuscule impedance values relative to the measured baseline, attributed to the tissue surrounding the artery or vein of interest. Smaller, ECG type electrodes can provide a larger signal, however their output is very easily affected by the placement of the electrodes relative to the targeted vasculature. This paper presents a novel method to adjust the active surface of electrodes, introducing Dynamically Re-sizeable Electrodes (DRE), to only target the exact area of interest, forming localised electrodes, without having to manually re-position them. Elongated rectangular electrodes were partitioned into smaller electrode segments, interconnected through custom circuitry. For the development and assessment of the DRE system, work was carried out both experimentally in-vitro on gelatine phantoms using custom switching circuits and through finite element modelling (FEM) simulations in COMSOL. A scanning sequence made use of DRE in single segment variable tetra-pole (SSVT) mode proved capable to identify the transcutaneous location of the blood vessel of interest and the specific electrode segments located in its vicinity. Impedance measurements were then taken using these segments connected to form localised electrodes only placed over the targeted vessel. The resulting localised electrodes exhibited up to increased sensitivity to blood variations relative to larger electrodes.
机译:肢体的阻抗体积通常涉及肢体周围的带电极,以监测血容量的变化。这通常会导致受监测的血液变化相对于测量的基线产生微量阻抗值,其归因于围绕动脉或静脉的组织。较小的ECG型电极可以提供更大的信号,但是它们的输出非常容易受到电极相对于目标脉管系统的放置的影响。本文介绍了一种调节电极有源表面的新方法,引入动态可重新化的电极(DRE),仅瞄准感兴趣的精确面积,形成局部电极,而不必手动重新定位它们。将细长的矩形电极分配到较小的电极段中,通过定制电路互连。对于DRE系统的开发和评估,使用定制切换电路和COMSOL中的有限元模拟(FEM)模拟,在明胶幻像上实验在体外进行工作。扫描序列在单段变量Tetra-杆(SSVT)模式中使用DRE能够识别感兴趣的血管的经皮位置和位于其附近的特定电极段。然后使用连接以形成仅放置在靶向容器上的局部电极的这些区段进行阻抗测量。所得到的局部电极呈现出对相对于较大电极的血液变化的敏感性增加。

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