Design of pressure-driven microfluidic networks using electric circuit analogy

KW Oh, K Lee, B Ahn, EP Furlani - Lab on a Chip, 2012 - pubs.rsc.org
This article reviews the application of electric circuit methods for the analysis of pressure-
driven microfluidic networks with an emphasis on concentration-and flow-dependent …

Concentration gradient generation methods based on microfluidic systems

X Wang, Z Liu, Y Pang - RSC advances, 2017 - pubs.rsc.org
Various concentration gradient generation methods based on microfluidic systems are
summarized in this paper. The review covers typical structural characteristics, gradient …

Biological applications of microfluidic gradient devices

S Kim, HJ Kim, NL Jeon - Integrative Biology, 2010 - academic.oup.com
Molecular gradients play an important role in diverse physiological and pathological
phenomena such as immune response, wound healing, development and cancer …

An integrated microfluidics platform with high-throughput single-cell cloning array and concentration gradient generator for efficient cancer drug effect screening

B Wang, BS He, XL Ruan, J Zhu, R Hu, J Wang… - Military Medical …, 2022 - Springer
Background Tumor cell heterogeneity mediated drug resistance has been recognized as the
stumbling block of cancer treatment. Elucidating the cytotoxicity of anticancer drugs at single …

Enzyme kinetic measurements using a droplet-based microfluidic system with a concentration gradient

MPN Bui, CA Li, KN Han, J Choo, EK Lee… - Analytical …, 2011 - ACS Publications
In this paper, we propose a microfluidic device that is capable of generating a concentration
gradient followed by parallel droplet formation within channels with a simple T-junction …

Controlling mass transport in microfluidic devices

JS Kuo, DT Chiu - Annual Review of Analytical Chemistry, 2011 - annualreviews.org
Microfluidic platforms offer exquisite capabilities in controlling mass transport for biological
studies. In this review, we focus on recent developments in manipulating chemical …

Rapid generation of spatially and temporally controllable long-range concentration gradients in a microfluidic device

Y Du, J Shim, M Vidula, MJ Hancock, E Lo, BG Chung… - Lab on a Chip, 2009 - pubs.rsc.org
The ability to rapidly generate concentration gradients of diffusible molecules has important
applications in many chemical and biological studies. Here we established spatially and …

Inverse design of microfluidic concentration gradient generator using deep learning and physics-based component model

SH Hong, H Yang, Y Wang - Microfluidics and Nanofluidics, 2020 - Springer
This paper presents a new paradigm of deep neural network (DNN) for the inverse design of
microfluidic concentration gradient generators (µCGGs) with complex network topology. In …

Preparation of arrays of cell spheroids and spheroid-monolayer cocultures within a microfluidic device

T Okuyama, H Yamazoe, N Mochizuki… - Journal of bioscience …, 2010 - Elsevier
This study describes a novel method for generation of an array of three-dimensional (3D)
multicellular spheroids within a microchannel in patterned cultures containing one or …

Surrogate-based optimization with adaptive sampling for microfluidic concentration gradient generator design

H Yang, SH Hong, R ZhG, Y Wang - RSC advances, 2020 - pubs.rsc.org
This paper presents a surrogate-based optimization (SBO) method with adaptive sampling
for designing microfluidic concentration gradient generators (μCGGs) to meet prescribed …