Multivalent aptasensor array and silver aggregated amplification for multiplex detection in microfluidic devices. Xiaohui Liu, Hui Li, Yaju Zhao, Xiaodong Yu, Danke Xu.Lab-on-a-chip sensing devices for biomedical applications. Pavel Sengupta, Kalap Khanra, Amit Roy Chowdhury, Pallab Datta.The geometry of cutting and shuffling: An outline of possibilities for piecewise isometries. Design and Simulation of Microfluidic Micro-Mixer with Parallelogram Barriers. Arpad Dusa, Ivana Podunavac, Sanja Kojic, Vasa Radonic.Biotechnology and Bioprocess Engineering 2019, 24 Development of a Microdilution Device with One-step Dilution of Cytochalasin-B for Treating ORL-48 Cancer Microtissues. Chin Fhong Soon, Sargunan A/L Sundra, Nurfarina Zainal, Farshid Sefat, Mohd Khairul Ahmad, Nafarizal Nayan, Kian Sek Tee, Sok Ching Cheong.Numerical modeling and experimental validation of passive microfluidic mixer designs for biological applications. Shubha Jain, Harikrishnan Narayanan Unni.Numerical Modelling of Mixing in a Microfluidic Droplet Using a Two-Phase Moving Frame of Reference Approach. Evaluation of Microchamber Geometries and Surface Conditions for Electrokinetic Driven Mixing. The Journal of Physical Chemistry B 2007, 111 Three-Dimensional Nanofabrication with Elastomeric Phase Masks. Shir, Seokwoo Jeon, Hongwei Liao, Matthew Highland, David G. Industrial & Engineering Chemistry Research 2008, 47 A Review on the Potential Applications of Curved Geometries in Process Industry. Subhashini Vashisth, Vimal Kumar, and, Krishna D.Design and Evaluation of a Passive Alcove-Based Microfluidic Mixer. Accelerated Immunoassays Based on Magnetic Particle Dynamics in a Rotating Capillary Tube with Stationary Magnetic Field. Journal of the American Chemical Society 2013, 135 Microfluidic Mixing Triggered by an External LED Illumination. Anna Venancio-Marques, Fanny Barbaud, and Damien Baigl.Highly Integrated Microfluidic Chip Coupled to Mass Spectrometry for Online Analysis of Residual Quinolones in Milk. Yaju Zhao, Minmin Tang, Fei Liu, Hui Li, Haiyan Wang, Danke Xu.Recent Advances in Microfluidics for the Preparation of Drug and Gene Delivery Systems. Journal of Agricultural and Food Chemistry 2021, 69 Fully Automatic Multi-Class Multi-Residue Analysis of Veterinary Drugs Simultaneously in an Integrated Chip-MS Platform. Minmin Tang, Chenchen Zhang, La Ta, Li Tan, Mei Zhang, Danke Xu.This article is cited by 145 publications. Theoretical simulations were also performed in an attempt to describe the extent of mixing in microfabricated systems. In contrast, after passage through the channel network in the ∼200-μm-length static mixer bed, mixing was complete as determined by confocal microscopy and CCD detection. It was observed that little mixing of the confluent solvent streams occurred in the 100-μm-wide, 300-μm-long mixer inlet channel where mixing would be achieved almost exclusively by diffusion. The channel network composing the mixer was ∼10 μm deep. All channels running parallel to the direction of flow were 5 μm in width whereas larger 27-μm-width channels ran back and forth through the parallel channel network at a 45° angle. Mixing was achieved in a microfabricated device with multiple intersecting channels of varying lengths and a bimodal width distribution. This paper reports the construction and characterization of a 100-pL mixer for liquids transported by electroosmotic flow. Mixing confluent liquid streams is an important, but difficult operation in microfluidic systems.
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