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首页> 外文期刊>Current Organic Synthesis >The Predictive Role of Raw Bioelectrical Impedance Parameters in Water Compartments and Fluid Distribution Assessed by Dilution Techniques in Athletes
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The Predictive Role of Raw Bioelectrical Impedance Parameters in Water Compartments and Fluid Distribution Assessed by Dilution Techniques in Athletes

机译:原料生物电阻抗参数在运动器中稀释技术评估的水隔室和流体分布中的预测作用

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The aims of this study were to analyze the usefulness of raw bioelectrical impedance (BI) parameters in assessing water compartments and fluid distribution in athletes. A total of 202 men and 71 female athletes were analyzed. Total body water (TBW) and extracellular water (ECW) were determined by dilution techniques, while intracellular water (ICW) was calculated. Fluid distribution was calculated as the ECW/ICW ratio (E:I). Phase angle (PhA), resistance (R) and reactance (Xc) were obtained through BI spectroscopy using frequency 50kHz. Fat (FM) and fat-free mass (FFM) were assessed by dual-energy X-ray absorptiometry. After adjusting for height, FM, FFM, age and sports category we observed that: PhA predicted ICW (females: beta = 1.62, p < 0.01; males: beta = 2.70, p < 0.01) and E:I (males and females: beta = 0.08; p < 0.01); R explained TBW (females: beta = 0.03; p < 0.01; males: beta = 0.06; p < 0.01) and ECW (females: beta = -0.02, p < 0.01; males: beta = 0.03, p < 0.01) and ICW (females: beta = -0.01, p < 0.053; males: beta = -0.03 p < 0.01); and Xc predicted ECW (females: beta = 0.06, p < 0.01; males: beta = 0.12, p < 0.01). A higher PhA is a good predictor of a larger ICW pool and a lower E:I, regardless of body composition, age, height, and sports category. Lower R is associated with higher water pools whereas ECW expansion is explained by lower Xc. Raw BI parameters are useful predictors of total and extracellular pools, cellular hydration and fluid distribution in athletes.
机译:本研究的目的是分析原料生物电阻抗(BI)参数在评估运动员中的水隔室和流体分布方面的有用性。共分析了202名男子和71名女运动员。通过稀释技术确定总体水(TBW)和细胞外水(ECW),而计算细胞内水(ICW)。将流体分布作为ECW / ICW比(E:i)计算。通过使用50kHz,通过双光谱获得相位角(PHA),电阻(R)和电抗(XC)。通过双能X射线吸收测定评估脂肪(FM)和无脂肪量(FFM)。在调整高度,FM,FFM,年龄和体育类别之后,我们观察到:PHA预测ICW(女性:β= 1.62,P <0.01;男性:BETA = 2.70,P <0.01)和E:I(男性和女性: β= 0.08; p <0.01); R解释了TBW(女性:β= 0.03; P <0.01;男性:β= 0.06; P <0.01)和ECW(女性:β= -0.02,P <0.01;男性:BETA = 0.03,P <0.01)和ICW (女性:Beta = -0.01,P <0.053;男性:β= -0.03 p <0.01);和XC预测ECW(女性:β= 0.06,P <0.01;男性:β= 0.12,P <0.01)。更高的PHA是一个较大的ICW池的良好预测因子,较低的E:i,无论身体成分,年龄,高度和体育类别如何。下r与较高的水池相关,而eCW扩展由低XC解释。 RAW BI参数是总和和细胞外池的有用预测因子,运动员中的细胞水化和流体分布。

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