Siemens Molecular Imaging, Biomarker Research, 6100 Bristol Parkway, Culver City, CA 90230, USA.
Biomed Microdevices. 2011 Feb;13(1):231-42. doi: 10.1007/s10544-010-9488-0.
We present numerical modeling and experimental studies of flow optimization inside a batch microfluidic micro-reactor used for synthesis of human-scale doses of Positron Emission Tomography (PET) tracers. Novel techniques are used for mixing within, and eluting liquid out of, the coin-shaped reaction chamber. Numerical solutions of the general incompressible Navier Stokes equations along with time-dependent elution scalar field equation for the three dimensional coin-shaped geometry were obtained and validated using fluorescence imaging analysis techniques. Utilizing the approach presented in this work, we were able to identify optimized geometrical and operational conditions for the micro-reactor in the absence of radioactive material commonly used in PET related tracer production platforms as well as evaluate the designed and fabricated micro-reactor using numerical and experimental validations.
我们提出了一种数值模拟和实验研究,研究了用于合成人类规模的正电子发射断层扫描(PET)示踪剂的批量微流控微反应器内部的流动优化。我们使用了新颖的技术来混合硬币形反应室内的液体,并将液体从其中洗脱出来。通过荧光成像分析技术,获得了硬币形三维几何形状的一般不可压缩纳维-斯托克斯方程的数值解以及随时间变化的洗脱标量场方程。利用本工作中提出的方法,我们能够确定在没有放射性物质的情况下,微反应器的优化几何和操作条件,这种放射性物质通常用于与 PET 相关的示踪剂生产平台,并且可以使用数值和实验验证来评估设计和制造的微反应器。