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Factors affecting sedimentational separation of bacteria from blood

机译:影响血液细菌沉积分离的因素

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Rapid diagnosis of blood infections requires fast and efficient separation of bacteria from blood. We have developed spinning hollow disks that separate bacteria from blood cells via the differences in sedimentation velocities of these particles. Factors affecting separation included the spinning speed and duration, and disk size. These factors were varied in dozens of experiments for which the volume of separated plasma, and the concentration of bacteria and red blood cells (RBCs) in separated plasma were measured. Data were correlated by a parameter of characteristic sedimentation length, which is the distance that an idealized RBC would travel during the entire spin. Results show that characteristic sedimentation length of 20 to 25 mm produces an optimal separation and collection of bacteria in plasma. This corresponds to spinning a 12-cm-diameter disk at 3,000 rpm for 13 s. Following the spin, a careful deceleration preserves the separation of cells from plasma and provides a bacterial recovery of about 61 +/- 5%.
机译:快速诊断血液感染需要快速有效地分离血液。我们已经开发了纺丝中空盘,其通过这些颗粒的沉降速度的差异分离细菌。影响分离的因素包括纺丝速度和持续时间,磁盘尺寸。测量这些因素在几十实验中变化,测量分离的血浆的分离等离子体的体积和细菌和红细胞浓度(RBC)的浓度。数据是由特征沉降长度的参数相关的,这是理想化RBC在整个旋转期间行进的距离。结果表明,20至25 mm的特征沉降长度产生了血浆中的最佳分离和收集细菌。这对应于在3,000 rpm下旋转12厘米直径的盘13秒。旋转后,仔细减速保持细胞与血浆的分离,并提供约61 +/- 5%的细菌回收率。

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