首页> 外文期刊>Research in Veterinary Science >Blood collection from dairy calves at exsanguination post-slaughter yields similar biochemical and packed cell volume measurements compared with in vivo collection during lairage
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Blood collection from dairy calves at exsanguination post-slaughter yields similar biochemical and packed cell volume measurements compared with in vivo collection during lairage

机译:在屠宰后乳制品牛犊的血液收集产生类似的生化和包装的细胞体积测量,而在Lairage期间相比

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Blood collection at exsanguination is a method of collecting samples at abattoirs which itself has no effect on animal welfare, compared with collection prior to stunning. However, there is the potential for artefact to affect measurements. It was hypothesised that, for most blood analyzes measured, the differences between lairage and exsanguination measurements would be minimal, except for creatine kinase, which was expected be higher in exsanguination samples. Fifty-nine male dairy calves approximately 5-10 days old were sampled prior to slaughter, and again during exsanguination after stunning. Each sample was analysed for packed cell volume, serum urea, beta-hydroxybutyrate, gamma-glutamyl transferase, total protein, glucose and creatine kinase concentrations. Exsanguination and lairage blood results were compared using a paired t-test. There were no significant differences between the measurements taken at exsanguination compared with lairage for packed cell volume, urea and beta-hydroxybutyrate. Glucose concentrations were higher in exsanguination samples, and total protein concentrations were lower, but for both of these analyzes the differences were clinically small. Gamma-glutamyl transferase activity was lower in exsanguination samples compared with lairage samples. Creatine kinase activity was higher in exsanguination samples. It was concluded that collecting blood at exsanguination is a valid method for collecting samples for measurement of packed cell volume, urea, and beta-hydroxybutyrate in calves. Glucose and total protein can also yield useful measurements in these samples, though care needs to be taken with interpretation given the minor differences between exsanguination and lairage measurements. Exsanguination samples may be unsuitable for creatine kinase and gamma-glutamyl transferase measurement.
机译:放气中的血液收集是在Abattoir中收集样品的方法,该样品本身对动物福利没有影响,与在令人惊艳之前的收集相比。然而,存在人工制品来影响测量。假设,对于测量的大多数血液分析,除了肌酸激酶之外,Lairage和放血测量的差异将是最小的,除了预期放血样品中的肌酸激酶。在屠宰前,大约5-10天大约5-10天的牛犊,在令人惊叹之后再次在放血期间再次取样。分析每个样品的填充细胞体积,血清尿素,β-羟基丁酸酯,γ-戊二酰转移酶,总蛋白质,葡萄糖和肌酸激酶浓度。使用配对的T检验进行比较放血和血液结果。与填充细胞体积,尿素和β-羟丁酸的病因相比,放血的测量结果没有显着差异。葡萄糖浓度在放血样品中较高,并且总蛋白质浓度较低,但对于这两种分析,差异临床上很小。与腰果样品相比,γ-戊二酰转移酶活性较低。放血样品中的肌酸激酶活性较高。结论是,在放血上收集血液是收集用于测量填充细胞体积,尿素和β-羟基丁酸酯的样品的有效方法。葡萄糖和总蛋白质还可以在这些样品中产生有用的测量,虽然鉴于放血和腰果测量的微小差异,需要进行护理。放入语征样品可能不适合肌酸激酶和γ-谷氨酸转移酶测量。

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