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稿件编号: L4217
稿件标题: UF—1000i流式尿有形成分分析仪、尿干化学分析仪及尿沉渣镜检联合检测尿液成分的临床应用价值
稿件作者: 张建萍;
关键字词: UF—1000i尿有形成分分析仪 尿干化学分析仪 显微镜检测 联合检测
文章摘要: 【摘要】 目的: 探讨联合应用UF—1000i尿有形成分分析仪(以下简称UF—1000i)、尿干化学分析仪(以下简称干化学)及沉渣显微镜检测((以下简称镜检)尿液成分的临床价值。 方法: 随机收集我院门诊、住院病人新鲜尿标本1600份,分别用UF—1000i、干化学及镜检检测,并进行统计分析。 结果: UF—1000i与干化学检测结果比较差异显著,P<0.05;以镜检为标准,UF—1000i检测红细胞阳性率11.6%,假阳性4.88%、假阴性5.38%;检测白细胞阳性率13.1%,假阳性2.44%、假阴性2.19%,检测管型阳性率7.75%,假阳性6.25%、无假阴性;检测上皮细胞阳性率10.88%,假阳性1.69%、假阴性4.56%。UF—1000i+干化学联合检测与镜检比较:678例阳性标本中,UF—1000i红细胞阳性5例,镜检为非晶型盐类2例、真菌3例;干化学36例蛋白阳性、8例红细胞阳性,镜检阴性;922例阴性标本中,6例WBC镜检阳性(2-4/HP)。 结论: 无论是UF—1000i、干化学,还是UF—1000I+干化学联合检测均不能代替镜检,UF—1000i+干化学联合检测可起筛查作用,只有将三者有效结合,才能达到既提高工作效率又保证结果准确性的目的,体现其临床应用价值。
中图分类号: R446.12+1
杂志名称: 检验医学与临床
文章刊期: 2011年08卷04期
文章栏目: 临床探讨
稿件作者(英文): zhangjianping;
关键字词(英文): Analyzer UF-1000i Urine dry chemical analyzer Microscope Joint detection
文章摘要(英文): ABSTRACT Objective: UF-1000i combination of urine sediment analyzer (hereinafter referred to as UF-1000i), urine dry chemistry analyzer (hereinafter referred to as dry chemistry) and sediment microscopy (microscopic examination) the clinical value of urinary constituents. Methods: Random collection of our hospital, 1,600 patients were fresh urine samples were used to UF-1000i, dry chemistry and microscopic examination, and statistical analysis. Results: UF-1000i and dry chemistry test results were significant differences, P<0.05, by microscopic examination as the standard, UF-1000i positive rate of detection of red blood cells 11.6%, 4.88% false positive and false negative was 5.38%; testing positive rate of 13.1% white, 2.44% false positive and false negative is 2.19%, test tube The positive rate of 7.75%, 6.25% false positive, no false negative; testing positive rate of 10.88% epithelial cells, 1.69% false positive and false negative 4.56%. UF-1000i and dry joint detection and examination of chemical comparison: 678 cases of positive samples, UF-1000i -positive red blood cells in 5 cases, microscopic examination for the amorphous salt in 2 cases, fungi in 3 cases; dry chemical 36 cases of protein-positive, microscopy negative; 8 cases of dry chemical red-positive, microscopy negative. 922 cases of negative microscopy specimens were positive in 6 cases WBC (2-4/HP). Conclusion: Both UF-1000i or UF-1000i and dry chemistry are not substitute for examination combined detection, UF-1000i and dry chemical joint detection can play a complementary role in screening, only the effective integration of the three, can improve efficiency and achieve both The purpose of guarantee the accuracy of the results, reflecting its clinical application.
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