Wood D K, Requa M V, Cleland A N
Department of Physics, University of California at Santa Barbara, Santa Barbara, California 93106, USA.
Rev Sci Instrum. 2007 Oct;78(10):104301. doi: 10.1063/1.2794230.
We describe the design, fabrication, and use of a radio frequency reflectometer integrated with a microfluidic system, applied to the very high-throughput measurement of micron-scale particles, passing in a microfluidic channel through the sensor region. The device operates as a microfabricated Coulter counter [U.S. Patent No. 2656508 (1953)], similar to a design we have described previously, but here with significantly improved electrode geometry as well as including electronic tuning of the reflectometer; the two improvements yielding an improvement by more than a factor of 10 in the signal to noise and in the diametric discrimination of single particles. We demonstrate the high-throughput discrimination of polystyrene beads with diameters in the 4-10 microm range, achieving diametric resolutions comparable to the intrinsic spread of diameters in the bead distribution, at rates in excess of 15 x 10(6) beads/h.
我们描述了一种与微流控系统集成的射频反射仪的设计、制造和使用方法,该反射仪应用于微米级颗粒的高通量测量,这些颗粒在微流控通道中通过传感器区域。该设备的工作原理类似于我们之前描述过的微制造库尔特计数器[美国专利号2656508(1953)],但在此处电极几何结构有显著改进,并且包括反射仪的电子调谐;这两项改进使信噪比和单颗粒直径分辨能力提高了10倍以上。我们展示了对直径在4 - 10微米范围内的聚苯乙烯珠进行高通量分辨的能力,实现了与珠粒分布中直径固有分散度相当的直径分辨率,速率超过15×10⁶个珠粒/小时。