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Methods for Detection of Bioimpedance Variations in Resource Constrained Environments

机译:资源受限环境中生物阻抗变异的检测方法

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摘要

Changes in a certain parameter are often a few magnitudes smaller than the base value of the parameter, specifying significant requirements for the dynamic range and noise levels of the measurement system. In case of electrical bioimpedance acquisition, the variations can be 1000 times smaller than the entire measured value. Synchronous or lock-in measurement of these variations is discussed in the current paper, and novel measurement solutions are presented. Proposed methods are simple and robust when compared to other applicable solutions. A common feature shared by all members of the group of the proposed solutions is differentiation. It is achieved by calculating the differences between synchronously acquired consecutive samples, with lock-in integration and analog differentiation. All these methods enable inherent separation of variations from the static component of the signal. The variable component of the bioimpedance can, thus, be acquired using the full available dynamic range of the apparatus for its detection. Additive disturbing signals and omnipresent wideband noise are considered and the method for their reduction is proposed.
机译:某个参数的变化通常比该参数的基值小几个数量级,从而对测量系统的动态范围和噪声水平提出了很高的要求。在获取生物电阻抗的情况下,变化可以比整个测量值小1000倍。在本文中讨论了这些变化的同步或锁定测量,并提出了新颖的测量解决方案。与其他适用解决方案相比,所提出的方法既简单又健壮。提议的解决方案组的所有成员共有的一个共同特征是差异化。它是通过计算同步采集的连续样本之间的差异,锁定积分和模拟差分来实现的。所有这些方法都可以将变化与信号的静态分量进行固有的分离。因此,可以使用设备检测的全部可用动态范围来获取生物阻抗的可变分量。考虑了加性扰动信号和无处不在的宽带噪声,并提出了降低它们的方法。

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