Impact of head-down-tilt body position on abdomen resistance for urinary bladder monitory applications

IF 1.9 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
T. Freeborn, Shelby Critcher, Gwendolyn L. Hooper
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Abstract

Tissue electrical impedance (or bioimpedance) is a quantity related to the passive, frequency-dependent electrical properties of a biological tissue and is a promising modality for continuous monitoring of relative bladder volume and bladder activity. In this study, the impact of body position [specifically 6° head-down tilt (HDT)] intended to induce fluid redistribution and, therefore, result in a change in the electrical resistance of the abdomen is evaluated. The abdomen resistance (10 kHz–100 kHz) of nine healthy young adults was measured before and after 240 min in a 6° HDT position. Over this period, the resistance increase was not statistically significant even though the average bladder volume increased by 506 mL. It was expected that the abdomen resistance would decrease with an increase in bladder volume over this period. The masking of the expected resistance decrease is attributed to the shift in the fluid from the legs/abdomen to the neck/chest caused by the HDT body position over this period. Overall, this suggests that methods to differentiate bladder volume changes from other types of fluid shifts in the body are needed for resistance-based monitoring under free-living conditions.
低头倾斜体位对膀胱监测应用中腹部阻力的影响
组织电阻抗(或生物阻抗)是一个与生物组织的被动、频率相关电特性有关的量,是连续监测膀胱相对容量和膀胱活动的一种有前途的模式。本研究评估了体位(特别是 6° 头朝下倾斜 (HDT))的影响,体位的目的是诱导液体重新分布,从而导致腹部电阻的变化。在保持 6° HDT 体位 240 分钟前后,测量了 9 名健康年轻人的腹部电阻(10 kHz-100 kHz)。在此期间,尽管膀胱的平均容量增加了 506 毫升,但电阻的增加在统计学上并不显著。预计在此期间,腹部阻力会随着膀胱容量的增加而降低。预期阻力下降被掩盖的原因是,在此期间,HDT 体位导致液体从腿部/腹部转移到颈部/胸部。总之,这表明在自由生活条件下进行基于阻力的监测时,需要有方法将膀胱容量变化与体内其他类型的液体转移区分开来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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