An updated review on particle separation in passive microfluidic devices

被引:121
作者
Bayareh, Morteza [1 ]
机构
[1] Shahrekord Univ, Dept Mech Engn, Shahrekord, Iran
关键词
Particle separation; Passive techniques; Separation efficiency; Throughput; Clogging; CIRCULATING TUMOR-CELLS; SIMPLE SHEAR-FLOW; WHOLE-BLOOD; INERTIAL MIGRATION; HYDRODYNAMIC FILTRATION; SPHERICAL-PARTICLES; POISEUILLE FLOW; PILLAR SHAPE; SIZE; MICROFILTRATION;
D O I
10.1016/j.cep.2020.107984
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Particle separation has been extensively studied in recent years in a wide range of sciences, especially in the field of medicine and biotechnology. On the other hand, the topic has been considered in the context of interdisciplinary research; hence, many experiments have been carried out in this field. Particle separation is used to track particles during the drug-delivery process, the direction of the droplets in a specified path, etc. Both numerical and experimental methods have been used for separating and sorting different particles. Particle separation is performed using both active and passive techniques. In the present work, various passive techniques of particle separation are explained and compared to evaluate the separation efficiency, throughput rate, and clogging in microfluidic devices. The present paper focuses on the investigations conducted in particle separation between 2015 and 2020.
引用
收藏
页数:13
相关论文
共 127 条
[71]   An experimental characterization of a tunable separation device [J].
Mossige, E. J. ;
Jensen, A. ;
Mielnik, M. M. .
MICROFLUIDICS AND NANOFLUIDICS, 2016, 20 (12)
[72]   PDMS membrane filter with nano-slit array fabricated using three-dimensional silicon mold for the concentration of particles with bacterial size range [J].
Nam, Young-Ho ;
Lee, Seung-Ki ;
Kim, Jong-Ho ;
Park, Jae-Hyoung .
MICROELECTRONIC ENGINEERING, 2019, 215
[73]   Recent Advances and Future Perspectives on Microfluidic Liquid Handling [J].
Nam-Trung Nguyen ;
Hejazian, Majid ;
Ooi, Chin Hong ;
Kashaninejad, Navid .
MICROMACHINES, 2017, 8 (06)
[74]   Design, fabrication and characterization of drug delivery systems based on lab-on-a-chip technology [J].
Nam-Trung Nguyen ;
Shaegh, Seyed Ali Mousavi ;
Kashaninejad, Navid ;
Dinh-Tuan Phan .
ADVANCED DRUG DELIVERY REVIEWS, 2013, 65 (11-12) :1403-1419
[75]   Isolating single cells in a neurosphere assay using inertial microfluidics [J].
Nathamgari, S. Shiva P. ;
Dong, Biqin ;
Zhou, Fan ;
Kang, Wonmo ;
Giraldo-Vela, Juan P. ;
McGuire, Tammy ;
McNaughton, Rebecca L. ;
Sun, Cheng ;
Kessler, John A. ;
Espinosa, Horacio D. .
LAB ON A CHIP, 2015, 15 (24) :4591-4597
[76]   Effect of gradient profile in ceramic membranes on filtration characteristics: Implications for membrane development [J].
Ng, Tze Chiang Albert ;
Lyu, Zhiyang ;
Gu, Qilin ;
Zhang, Lei ;
Poh, Wei Jie ;
Zhang, Zhixiao ;
Wang, John ;
Ng, How Yong .
JOURNAL OF MEMBRANE SCIENCE, 2020, 595
[77]  
Nguyen NT, 2019, FUNDAMENTALS APPL MI
[78]   Laminar-flow-based separations at the microscale [J].
Oakey, J ;
Allely, J ;
Marr, DWM .
BIOTECHNOLOGY PROGRESS, 2002, 18 (06) :1439-1442
[79]   Inertial focusing of microparticles in curvilinear microchannels with different curvature angles [J].
Ozbey, Arzu ;
Karimzadehkhouei, Mehrdad ;
Bayrak, Ozgecan ;
Kosar, Ali .
MICROFLUIDICS AND NANOFLUIDICS, 2018, 22 (06)
[80]   Manufacturing and wetting low-cost microfluidic cell separation devices [J].
Pawell, Ryan S. ;
Inglis, David W. ;
Barber, Tracie J. ;
Taylor, Robert A. .
BIOMICROFLUIDICS, 2013, 7 (05)