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Glucose concentration in capillary blood of dairy cows obtained by a minimally invasive lancet technique and determined with three different hand-held devices

机译:通过微创刺血针技术获得并通过三种不同的手持式设备测定的奶牛毛细血管血液中的葡萄糖浓度

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Background Dairy cows have a massive demand for glucose at the onset of lactation. A poor adaption to this period leads to an excessive negative energy balance with an increased risk for ketosis and impaired animal health and production. Besides the measurement of ketones, analysing the glucose concentration in blood is reported as helpful instrument for diagnosis and differentiation of ketosis. Monitoring metabolic parameters requires multiple blood sampling. In other species, new blood sampling techniques have been introduced in which small amounts of blood are rapidly analysed using electronic hand-held devices. The objective of this study was to evaluate the suitability of capillary blood for blood glucose measurement in dairy cows using the hand-held devices FreeStyle Precision (FSP, Abbott), GlucoMen LX Plus (GLX, A. Menarini) and the WellionVet GLUCO CALEA, (WGC, MED TRUST). In total, 240 capillary blood samples were obtained from dry and fresh lactating Holstein-Friesian cows. Blood was collected from the skin of the exterior vulva by using a lancet. For method comparison, additional blood samples were taken from a coccygeal vessel and analyzed in a laboratory. Glucose concentrations measured by a standard laboratory method were defined as the criterion standard. Results The Pearson correlation coefficients between the glucose concentrations analyzed in capillary blood with the devices and the reference were 73?% for the FSP, 81?% for the GLX and 41?% for the WGC. Bland-Altman plots showed biases of ?18.8?mg/dL for the FSP, -11.2?mg/dL for the GLX and +20.82?mg/dL for the WGC. The optimized threshold determined by a Receiver Operating Characteristics analysis to detect hyperglycemia using the FSP was 43?mg/dL with a sensitivity (Se) and specificity (Sp) of 76 and 80?%. Using the GLX and WGC optimized thresholds were 49?mg/dL (Se?=?92?%, Sp?=?85?%) and 95?mg/dL (Se?=?39?%, Sp?=?92?%). Conclusions The results of this study demonstrate good performance characteristics for the GLX and moderate for the FSP to detect hyperglycemia in dairy cows using capillary blood. With the study settings, the WGC was not suitable for determination of glucose concentrations.
机译:背景技术泌乳初期,奶牛对葡萄糖的需求量很大。对这一时期的适应不良会导致过度的负能量平衡,增加患酮症的风险,并损害动物健康和生产。除了测量酮外,据报道分析血液中的葡萄糖浓度也是诊断和区分酮症的有用工具。监测代谢参数需要多次采血。在其他物种中,已经引入了新的血液采样技术,其中使用电子手持设备对少量血液进行了快速分析。这项研究的目的是使用FreeStyle Precision(FSP,Abbott),GlucoMen LX Plus(GLX,A. Menarini)和WellionVet GLUCO CALEA手持设备评估毛细管血在奶牛血糖测量中的适用性, (WGC,MED TRUST)。总共从干燥和新鲜泌乳的荷斯坦-弗里斯兰奶牛身上采集了240个毛细血管血样。使用刺血针从外阴皮肤采集血液。为了进行方法比较,从尾骨血管中采集了其他血样,并在实验室中进行了分析。将通过标准实验室方法测量的葡萄糖浓度定义为标准标准。结果用仪器分析的毛细管血中葡萄糖浓度与参考值之间的皮尔森相关系数,FSP为73%,GLX为81%,WGC为41%。 Bland-Altman图显示,FSP的偏差为?18.8?mg / dL,GLX的偏差为-11.2?mg / dL,WGC的偏差为+20.82?mg / dL。通过接收器操作特征分析确定的使用FSP检测高血糖的最佳阈值为43?mg / dL,灵敏度(Se)和特异性(Sp)分别为76和80​​%。使用GLX和WGC优化的阈值分别为49?mg / dL(Se?=?92?%,Sp?=?85?%)和95?mg / dL(Se?=?39?%,Sp?=?92) ?%)。结论这项研究的结果表明,GLX具有良好的性能特征,而FSP具有中等的性能特征,可通过毛细管血检测奶牛的高血糖。在研究设置下,WGC不适合测定葡萄糖浓度。

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