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Bioimpedance spectroscopy for the estimation of body fluid volumes in mice

机译:生物阻抗光谱法估算小鼠体液量

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摘要

Conventional indicator dilution techniques for measuring body fluid volume are laborious, expensive, and highly invasive. Bioimpedance spectroscopy (BIS) may be a useful alternative due to being rapid, minimally invasive, and allowing repeated measurements. BIS has not been reported in mice; hence we examined how well BIS estimates body fluid volume in mice. Using C57/Bl6 mice, the BIS system demonstrated <5% intermouse variation in total body water (TBW) and extracellular (ECFV) and intracellular fluid volume (ICFV) between animals of similar body weight. TBW, ECFV, and ICFV differed between heavier male and lighter female mice; however, the ratio of TBW, ECFV, and ICFV to body weight did not differ between mice and corresponded closely to values in the literature. Furthermore, repeat measurements over 1 wk demonstrated <5% intramouse variation. Default resistance coefficients used by the BIS system, defined for rats, produced body composition values for TBW that exceeded body weight in mice. Therefore, body composition was measured in mice using a range of resistance coefficients. Resistance values at 10% of those defined for rats provided TBW, ECFV, and ICFV ratios to body weight that were similar to those obtained by conventional isotope dilution. Further evaluation of the sensitivity of the BIS system was determined by its ability to detect volume changes after saline infusion; saline provided the predicted changes in compartmental fluid volumes. In summary, BIS is a noninvasive and accurate method for the estimation of body composition in mice. The ability to perform serial measurements will be a useful tool for future studies.
机译:用于测量体液量的常规指示剂稀释技术费力,昂贵且具有高侵入性。由于生物阻抗谱(BIS)快速,微创且可重复测量,因此可能是一种有用的替代方法。尚未在小鼠中报道BIS。因此,我们研究了BIS估计小鼠体液量的能力。使用C57 / Bl6小鼠,BIS系统显示出体重相似的动物之间的体内水(TBW)和细胞外(ECFV)和细胞内液体积(ICFV)的小鼠间差异<5%。较重的雄性和较轻的雌性小鼠的TBW,ECFV和ICFV有所不同。然而,小鼠之间的TBW,ECFV和ICFV与体重的比例没有差异,与文献中的值非常接近。此外,超过1周的重复测量显示<5%的小鼠内变异。 BIS系统为大鼠定义的默认抗性系数产生的TBW身体成分值超过了小鼠的体重。因此,使用一定范围的电阻系数在小鼠中测量了身体成分。在为大鼠定义的电阻值的10%处提供的TBW,ECFV和ICFV与体重之比类似于通过常规同位素稀释获得的值。 BIS系统检测盐水注入后体积变化的能力决定了对BIS系统灵敏度的进一步评估。盐水提供了隔室液体体积的预测变化。总而言之,BIS是一种用于评估小鼠体内成分的非侵入性准确方法。执行串行测量的能力将是将来研究的有用工具。

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