
影响因子:3.385
ISSN:1932-1058
出版社:American Institute of Physics,
出版地:Melville, NY
出版国家:United States
刊期:季刊
创刊时间:2007
语种:英文
审稿周期:约1.0个月
中科院分区:3
投稿命中率:命中率约30.90%较易
国外数据收录:IMIM
中国收录文章数:26
5年影响因子:3.402
研究领域:生物医学研究、生物技术、分子生物学
官方链接:http://bmf.aip.org/
A capillary dielectrophoretic chip for real-time blood cell separation from a drop of whole bloodShu-Hsien Liao, Ching-Yu Chang, and Hsien-Chang ChangThis study proposes a capillary dielectrophoretic chip to separate blood cells from a drop of whole blood (approximately 1μl) sample using negative dielectrophoretic force. The separating efficiency was evaluated by analyzing the image before and after dielectrophoretic force manipulation. Blood samples with various hematocrits (10%-60%) were tested with varied separating voltages and chip designs. In this study, a chip with 50μm gap design achieved a separation efficiency of approximately 90% within 30s when the hematocrit was in the range of 10%-50%.Biomicrofluidics 7, 024110 (2013)
A fluorescence based method for the quantification of surface functional groups in closed micro- and nanofluidic channelsYu Wang, Rachel D. Lowe, Yara X. Mejia, Holger Feindt, Siegfried Steltenkamp, and Thomas P. BurgSurface analysis is critical for the validation of microfluidic surface modifications for biology, chemistry, and physics applications. However, until now quantitative analytical methods have mostly been focused on open surfaces. Here, we present a new fluorescence imaging method to directly measure the surface coverage of functional groups inside assembled microchannels over a wide dynamic range.Biomicrofluidics 7, 026503 (2013)| 同领域期刊名称 | 影响因子 |