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Model-based correction of the influence of body position on continuous segmental and hand-to-foot bioimpedance measurements

机译:基于模型的身体位置对连续节段和手到脚生物阻抗测量的影响的校正

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摘要

Bioimpedance spectroscopy (BIS) is suitable for continuous monitoring of body water content. The combination of body posture and time is a well-known source of error, which limits the accuracy and therapeutic validity of BIS measurements. This study evaluates a model-based correction as a possible solution. For this purpose, an 11-cylinder model representing body impedance distribution is used. Each cylinder contains a nonlinear two-pool model to describe fluid redistribution due to changing body position and its influence on segmental and hand-to-foot (HF) bioimpedance measurements. A model-based correction of segmental (thigh) and HF measurements (Xitron Hydra 4200) in nine healthy human subjects (following a sequence of 7 min supine, 20 min standing, 40 min supine) has been evaluated. The model-based compensation algorithm represents a compromise between accuracy and simplicity, and reduces the influence of changes in body position on the measured extracellular resistance and extracellular fluid by up to 75 and 70%, respectively.
机译:生物阻抗谱(BIS)适用于连续监测体内水分含量。身体姿势和时间的结合是众所周知的误差来源,这限制了BIS测量的准确性和治疗有效性。这项研究评估基于模型的校正作为可能的解决方案。为此,使用了代表身体阻抗分布的11缸模型。每个圆柱体都包含一个非线性的两池模型,用于描述由于身体位置变化而引起的流体重新分布及其对节段性和手足(HF)生物阻抗测量的影响。已评估了九名健康人类受试者(遵循仰卧位7分钟,站立20分钟,仰卧40分钟的顺序)的分段(大腿)和HF测量值(Xitron Hydra 4200)基于模型的校正。基于模型的补偿算法代表了准确性和简便性之间的折衷,并且将体位变化对所测得的细胞外电阻和细胞外液的影响分别降低了75%和70%。

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