Results 1 to 10 of about 1,415,248 (230)
Deterministic Lateral Displacement Microfluidic Chip for Minicell Purification [PDF]
Deterministic lateral displacement (DLD) is a well-known microfluidic technique for particle separation with high potential for integration into bioreactors for therapeutic applications.
Ahmad Sherbaz +4 more
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A Review on Deterministic Lateral Displacement for Particle Separation and Detection [PDF]
The separation and detection of particles in suspension are essential for a wide spectrum of applications including medical diagnostics. In this field, microfluidic deterministic lateral displacement (DLD) holds a promise due to the ability of continuous
Thoriq Salafi, Yi Zhang, Yong Zhang
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High-Throughput Separation of Long DNA in Deterministic Lateral Displacement Arrays
Length-based separation of DNA remains as relevant today as when gel electrophoresis was introduced almost 100 years ago. While new, long-read genomics technologies have revolutionised accessibility to powerful genomic data, the preparation of samples ...
Oskar E. Ström +2 more
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Mammalian blood cell separation methods contribute to improving the diagnosis and treatment of animal and human diseases. Microfluidic deterministic lateral displacement (DLD) devices can sort cells based on their particle diameter.
Koji Matsuura, Koji Takata
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Deterministic lateral displacement (DLD) is a microfluidic method for the continuous separation of particles based on their size. There is growing interest in using DLD for harvesting circulating tumor cells from blood for further assays due to its low ...
Eric Gioe +3 more
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A High-Aspect-Ratio Deterministic Lateral Displacement Array for High-Throughput Fractionation
Future industrial applications of microparticle fractionation with deterministic lateral displacement (DLD) devices are hindered by exceedingly low throughput rates.
Jonathan Kottmeier +4 more
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Step emulsification, which uses a geometry-dependent mechanism for generating uniformly sized droplets, has recently gained considerable attention because of its robustness against flow fluctuations.
Guangchong Ji +2 more
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Deterministic lateral displacement (DLD) technology has great potential for the separation, enrichment, and sorting of red blood cells (RBCs). This paper presents a numerical simulation of the motion of RBCs using DLD devices with different pillar shapes
Yanying Jiao, Yongqing He, Feng Jiao
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Step emulsification is a key technique for achieving scalable production of monodisperse emulsion droplets owing to its resilience to flow fluctuations.
Guangchong Ji +3 more
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Deterministic lateral displacement (DLD) is a popular technique for separating micro-scale and nano-scale particles continuously. In this paper, an efficient three-dimensional fictitious domain method is developed for the direct numerical simulation of ...
Zhaosheng Yu, Yutian Yang, Jianzhong Lin
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