Fielding C Langdon, Magdesian K Gary, Elliott Denise A, Cowgill Larry D, Carlson Gary P
Veterinary Medical Teaching Hospital, School of Veterinary Medicine, University of California, Davis, CA 95616, USA.
Am J Vet Res. 2004 Mar;65(3):320-6. doi: 10.2460/ajvr.2004.65.320.
To evaluate the use of multifrequency bioelectrical impedance analysis (MF-BIA) for estimating total body water (TBW), extracellular fluid volume (ECFV), and intracellular fluid volume (ICFV) in horses.
9 healthy mares.
TBW and ECFV were measured by use of deuterium oxide and sodium bromide dilution techniques, respectively. Intracellular fluid volume was calculated as the difference between TBW and ECFV. Concurrently, MF-BIA recordings were obtained by use of 4 anatomic electrode positions and 3 measurements of length. Models for MF-BIA data were created for all combinations of length and anatomic electrode position. Models were evaluated to determine the position-length configuration that provided the most consistent estimates of TBW, ECFV, and ICFV, compared with values determined by use of the dilution techniques.
Positioning electrodes over the ipsilateral carpus and tarsus and use of height at the tuber sacrale for length provided the closest estimate between values for TBW, ECFV, and ICFV predicted by use of MF-BIA and measured values obtained by dilutional techniques. This model had the narrowest 95% limits of agreement.
MF-BIA techniques have been used to predict changes in TBW, ECFV, and ICFV in healthy and diseased humans. Results reported in this study provide an equine-specific model to serve as the basis for further evaluation of MF-BIA in horses with altered fluid states. The MF-BIA techniques have a number of potential applications for use in horses, including evaluation of exercise physiology, pharmacologic studies, and critical-care management.
评估多频生物电阻抗分析(MF-BIA)用于估算马的总体水(TBW)、细胞外液量(ECFV)和细胞内液量(ICFV)的情况。
9匹健康母马。
分别采用氧化氘和溴化钠稀释技术测量TBW和ECFV。细胞内液量通过TBW与ECFV的差值计算得出。同时,使用4个解剖电极位置和3次长度测量获取MF-BIA记录。针对长度和解剖电极位置的所有组合创建MF-BIA数据模型。对模型进行评估,以确定与使用稀释技术确定的值相比,能提供最一致的TBW、ECFV和ICFV估算值的位置-长度配置。
将电极置于同侧腕关节和跗关节上方,并使用荐结节高度作为长度,所得到的通过MF-BIA预测的TBW、ECFV和ICFV值与通过稀释技术获得的测量值之间的估算最为接近。该模型的95%一致性界限最窄。
MF-BIA技术已用于预测健康和患病人类的TBW、ECFV和ICFV变化。本研究报告的结果提供了一个马特异性模型,作为进一步评估处于液体状态改变的马的MF-BIA的基础。MF-BIA技术在马中有许多潜在应用,包括运动生理学评估、药理学研究和重症护理管理。