Journal articles

2024

Data-driven fixed-structure frequency-based H2 and H∞ controller design

P. Schuchert; V. Gupta; A. Karimi 

Automatica. 2024. Vol. 160, p. 111398. DOI : 10.1016/j.automatica.2023.111398.

2023

Difference in Intestine Content of Caenorhabditis elegans When Fed on Non-Pathogenic or Pathogenic Bacteria

F. Rezaeianaran; M. A. M. Gijs 

Micromachines. 2023-07-01. Vol. 14, num. 7, p. 1386. DOI : 10.3390/mi14071386.

Acoustofluidic large-scale mixing for enhanced microfluidic immunostaining for tissue diagnostics

M. S. Draz; D. Dupouy; M. A. M. Gijs 

Lab On A Chip. 2023-06-27. DOI : 10.1039/d3lc00312d.

High-resolution imaging and analysis of the intestinal bacterial load of Caenorhabditis elegans during early adulthood

F. Rezaeianaran; M. A. M. Gijs 

Rsc Advances. 2023-06-05. Vol. 13, num. 25, p. 17230-17243. DOI : 10.1039/d3ra02934d.

Microtubule-mediated GLUT4 trafficking is disrupted in insulin-resistant skeletal muscle

J. R. Knudsen; K. W. Persson; C. Henriquez-Olguin; Z. Li; N. Di Leo et al. 

Elife. 2023-04-19. Vol. 12, p. e83338. DOI : 10.7554/eLife.83338.

Bubble-enhanced ultrasonic microfluidic chip for rapid DNA fragmentation (vol 22, pg 560, 2022)

L. Sun; T. Lehnert; S. Li; M. A. M. Gijs 

Lab On A Chip. 2023-03-29. Vol. 23, num. 8, p. 2141-2141. DOI : 10.1039/d3lc90037a.

Efficient AC electrothermal flow (ACET) on-chip for enhanced immunoassays

M. S. S. Draz; K. Uning; D. Dupouy; M. A. M. Gijs 

Lab On A Chip. 2023-01-16. DOI : 10.1039/d2lc01147f.

Multi-photon polymerization using upconversion nanoparticles for tunable feature-size printing

Q. Zhang; A. Boniface; V. K. Parashar; M. A. M. Gijs; C. Moser 

Nanophotonics. 2023-01-10. DOI : 10.1515/nanoph-2022-0598.

2022

Polydimethylsiloxane microstructure-induced acoustic streaming for enhanced ultrasonic DNA fragmentation on a microfluidic chip

L. Sun; T. Lehnert; M. A. M. Gijs; S. Li 

Lab On A Chip. 2022-09-30. Vol. 22, num. 21, p. 4224-4237. DOI : 10.1039/d2lc00366j.

The enhancement of DNA fragmentation in a bench top ultrasonic water bath with needle-induced air bubbles: Simulation and experimental investigation

L. Sun; Y. Liu; T. Lehnert; M. A. M. Gijs; S. Li 

Biomicrofluidics. 2022-07-01. Vol. 16, num. 4, p. 044103. DOI : 10.1063/5.0101740.

Bubble-enhanced ultrasonic microfluidic chip for rapid DNA fragmentation

L. Sun; T. Lehnert; S. Li; M. A. M. Gijs 

Lab On A Chip. 2022-01-06. Vol. 22, num. 3, p. 560-572. DOI : 10.1039/d1lc00933h.

2021

EASI-FISH for thick tissue defines lateral hypothalamus spatio-molecular organization

Y. Wang; M. Eddison; G. Fleishman; M. Weigert; S. Xu et al. 

Cell. 2021-12-22. Vol. 184, num. 26, p. 6361-+. DOI : 10.1016/j.cell.2021.11.024.

Ripening of two-dimensional colloidal CdSe nanocrystals into zero-dimensional nanodots

X. Huang; V. K. Parashar; M. A. M. Gijs 

Iscience. 2021-12-17. Vol. 24, num. 12, p. 103457. DOI : 10.1016/j.isci.2021.103457.

Effect of inoculum size and antibiotics on bacterial traveling bands in a thin microchannel defined by optical adhesive

Y. Liu; T. Lehnert; M. A. M. Gijs 

Microsystems & Nanoengineering. 2021-10-22. Vol. 7, num. 1, p. 86. DOI : 10.1038/s41378-021-00309-3.

An In Vivo Microfluidic Study of Bacterial Load Dynamics and Absorption in the C. elegans Intestine

V. Viri; M. Arveiler; T. Lehnert; M. Gijs 

Micromachines. 2021-07-01. Vol. 12, num. 7, p. 832. DOI : 10.3390/mi12070832.

Antimicrobial susceptibility testing by measuring bacterial oxygen consumption on an integrated platform

Y. Liu; T. Lehnert; T. Mayr; M. A. M. Gijs 

Lab On A Chip. 2021-07-16. Vol. 21, num. 18, p. 3520-3531. DOI : 10.1039/d1lc00296a.

Integration of polymeric membrane/dielectric sphere assemblies in microfluidic chips for enhanced-contrast imaging with low-magnification systems

V. Viri; D. Migliozzi; M. A. M. Gijs 

Journal Of Optical Microsystems. 2021-01-01. Vol. 1, num. 1, p. 014001. DOI : 10.1117/1.JOM.1.1.014001.

2020

Insight into the Growth of Anisotropic CdSe Nanocrystals: Attachment of Intrinsically Different Building Blocks

X. Huang; V. K. Parashar; Z. Ao; M. A. M. Gijs 

Journal Of Physical Chemistry C. 2020-12-17. Vol. 124, num. 50, p. 27754-27762. DOI : 10.1021/acs.jpcc.0c07933.

3D nanometrology of transparent objects by phase calibration of a basic bright-field microscope for multiple illumination apertures

D. Migliozzi; B. Zhao; M. Gijs 

Optics Express. 2020-09-14. Vol. 28, num. 20, p. 28882. DOI : 10.1364/OE.404240.

Prior exercise in humans redistributes intramuscular GLUT4 and enhances insulin -stimulated sarcolemmal and endosomal GLUT4 translocation

J. R. Knudsen; D. E. Steenberg; J. R. Hingst; L. R. Hodgson; C. Henriquez-Olguin et al. 

Molecular Metabolism. 2020-09-01. Vol. 39, p. 100998. DOI : 10.1016/j.molmet.2020.100998.

Fast antimicrobial susceptibility testing onEscherichia coliby metabolic heat nanocalorimetry

Y. Liu; T. Lehnert; M. A. M. Gijs 

Lab On A Chip. 2020-09-07. Vol. 20, num. 17, p. 3144-3157. DOI : 10.1039/d0lc00579g.

Anin vivomicrofluidic study of bacterial transit inC. elegansnematodes

V. Viri; M. Cornaglia; H. B. Atakan; T. Lehnert; M. A. M. Gijs 

Lab On A Chip. 2020-08-07. Vol. 20, num. 15, p. 2696-2708. DOI : 10.1039/d0lc00064g.

The ULK1/2 and AMPK Inhibitor SBI-0206965 Blocks AICAR and Insulin-Stimulated Glucose Transport

J. R. Knudsen; A. B. Madsen; K. W. Persson; C. Henriquez-Olguin; Z. Li et al. 

International Journal Of Molecular Sciences. 2020-04-01. Vol. 21, num. 7, p. 2344. DOI : 10.3390/ijms21072344.

Preface to the Special Issue of Rare Earth Luminescent Materials

J-C. G. Bunzli; X. Wang; X. Chen 

Journal Of Rare Earths. 2020-05-01. Vol. 38, num. 5, p. I-I. DOI : 10.1016/j.jre.2020.03.010.

Force microscopy of the Caenorhabditis elegans embryonic eggshell

R. Krenger; J. T. Burri; T. Lehnert; B. J. Nelson; M. A. M. Gijs 

Microsystems & Nanoengineering. 2020-05-04. Vol. 6, num. 1, p. 29. DOI : 10.1038/s41378-020-0137-3.

Speed-dispersion-induced alignment: A one-dimensional model inspired by swimming droplets experiments

P. Illien; C. de Blois; Y. Liu; M. N. van der Linden; O. Dauchot 

Physical Review E. 2020-04-13. Vol. 101, num. 4, p. 040602. DOI : 10.1103/PhysRevE.101.040602.

Automated phenotyping of Caenorhabditis elegans embryos with a high-throughput-screening microfluidic platform

H. B. Atakan; T. Alkanat; M. Cornaglia; R. Trouillon; M. A. M. Gijs 

Microsystems & Nanoengineering. 2020-04-06. Vol. 6, num. 1, p. 24. DOI : 10.1038/s41378-020-0132-8.

PDMS filter structures for size-dependent larval sorting and on-chip egg extraction of C. elegans

H. B. Atakan; F. Ayhan; M. A. M. Gijs 

Lab On A Chip. 2020-01-07. Vol. 20, num. 1, p. 155-167. DOI : 10.1039/c9lc00949c.

Microfluidic system for Caenorhabditis elegans culture and oxygen consumption rate measurements

R. Krenger; M. Cornaglia; T. Lehnert; M. A. M. Gijs 

Lab On A Chip. 2020-01-07. Vol. 20, num. 1, p. 126-135. DOI : 10.1039/c9lc00829b.

2019

Super-resolution optical imaging: A comparison

G. Huszka; M. A. M. Gijs 

Micro And Nano Engineering. 2019-03-01. Vol. 2, p. 7-28. DOI : 10.1016/j.mne.2018.11.005.

Bladder Cancer Photodynamic Therapeutic Agent with Off-On Magnetic Resonance Imaging Enhancement

C. Xie; H-F. Chau; J-X. Zhang; S. Tong; L. Jiang et al. 

Advanced Therapeutics. 2019-11-01. Vol. 2, num. 11, p. 1900068. DOI : 10.1002/adtp.201900068.

The Detection of Early Epigenetic Inheritance of Mitochondrial Stress in C. Elegans with a Microfluidic Phenotyping Platform

H. B. Atakan; K. S. Hof; M. Cornaglia; J. Auwerx; M. A. M. Gijs 

Scientific Reports. 2019-12-17. Vol. 9, p. 19315. DOI : 10.1038/s41598-019-55979-x.

Microfluidics-assisted multiplexed biomarker detection for in situ mapping of immune cells in tumor sections

D. Migliozzi; B. Pelz; D. G. Dupouy; A-L. Leblond; A. Soltermann et al. 

Microsystems & Nanoengineering. 2019-11-06. Vol. 5, p. 59. DOI : 10.1038/s41378-019-0104-z.

Automated Platform for Long-Term Culture and High-Content Phenotyping of Single C. elegans Worms

H. B. Atakan; R. Xiang; M. Cornaglia; L. Mouchiroud; E. Katsyuba et al. 

Scientific Reports. 2019-10-04. Vol. 9, p. 14340. DOI : 10.1038/s41598-019-50920-8.

Microfluidic-based immunohistochemistry for breast cancer diagnosis: a comparative clinical study

F. Aimi; M-G. Procopio; M. T. A. Flores; J-P. Brouland; N. Piazzon et al. 

Virchows Archiv. 2019-09-01. Vol. 475, num. 3, p. 313-323. DOI : 10.1007/s00428-019-02616-7.

CMOS and 3D Printing for NMR Spectroscopy at the Single Embryo Scale

M. Grisi; E. Montinaro; F. Vincent; L. Petho; M. C. Letizia et al. 

Chimia. 2019-08-01. Vol. 73, num. 7-8, p. 635-635. DOI : 10.2533/chimia.2019.635.

Spontaneous Formation of CdSe Photoluminescent Nanotubes with Visible-Light Photocatalytic Performance

X. Huang; V. K. Parashar; M. A. M. Gijs 

Acs Central Science. 2019-06-26. Vol. 5, num. 6, p. 1017-1023. DOI : 10.1021/acscentsci.9b00184.

Wearable Sensors for Frequency-Multiplexed EIT and Multilead ECG Data Acquisition

M. Rapin; F. Braun; A. Adler; J. Wacker; I. Frerichs et al. 

Ieee Transactions On Biomedical Engineering. 2019-03-01. Vol. 66, num. 3, p. 810-820. DOI : 10.1109/TBME.2018.2857199.

High-content, cell-by-cell assessment of HER2 overexpression and amplification: a tool for intratumoral heterogeneity detection in breast cancer

Huu Tuan Nguyen; D. Migliozzi; B. Bisig; L. de Leval; M. A. M. Gijs 

Laboratory Investigation. 2019-05-01. Vol. 99, num. 5, p. 722-732. DOI : 10.1038/s41374-018-0172-y.

Combining fluorescence-based image segmentation and automated microfluidics for ultrafast cell-by-cell assessment of biomarkers for HER2-type breast carcinoma

D. Migliozzi; H. T. Nguyen; M. A. M. Gijs 

Journal of Biomedical Optics. 2019-02-01. Vol. 24, num. 2, p. 21204. DOI : 10.1117/1.JBO.24.2.021204.

Multimodal imaging and high-throughput image-processing for drug screening on living organisms on-chip

D. Migliozzi; M. Cornaglia; L. Mouchiroud; V. Uhlmann; M. A. Unser et al. 

Journal of Biomedical Optics. 2019-02-01. Vol. 24, num. 2, p. 021205. DOI : 10.1117/1.JBO.24.2.021205.

A high sensitivity low-power capacitive front-end for insulin injection pens

F. Gaugaz; F. Krummenacher; F. Gaugaz; M. Kayal; S. Joly et al. 

Microelectronics Journal. 2019-03-01. Vol. 85, p. 129-134. DOI : 10.1016/j.mejo.2019.02.008.

Automated high-content phenotyping from the first larval stage till the onset of adulthood of the nematode Caenorhabditis elegans

H. B. Atakan; M. Cornaglia; L. Mouchiroud; J. Auwerx; M. A. M. Gijs 

Lab On A Chip. 2019-01-07. Vol. 19, num. 1, p. 120-135. DOI : 10.1039/c8lc00863a.

2018

Computer-Based Intensity Measurement Assists Pathologists in Scoring Phosphatase and Tensin Homolog Immunohistochemistry – Clinical Associations in NSCLC Patients of the European Thoracic Oncology Platform Lungscape Cohort

U. Rulle; Z. Tsourti; R. Casanova; K-F. Deml; E. Verbeken et al. 

Journal of Thoracic Oncology. 2018-12-01. Vol. 13, num. 12, p. 1851-1863. DOI : 10.1016/j.jtho.2018.08.2034.

Microfluidics-based immunofluorescence for fast staining of ALK in lung adenocarcinoma

S. Brajkovic; B. Pelz; M-G. Procopio; A-L. Leblond; G. Repond et al. 

Diagnostic Pathology. 2018-10-16. Vol. 13, p. 79. DOI : 10.1186/s13000-018-0757-1.

Dimensional tailoring of hydrothermally grown zinc oxide nanostructures in a continuous flow micro reactor

V. K. Parashar; M. Gijs 

Chemical Communications. 2018-12-04. Vol. 54, num. 93, p. 13064-13067. DOI : 10.1039/c8cc05384g.

Microsphere-mediated optical contrast tuning for designing imaging systems with adjustable resolution gain

D. Migliozzi; M. A. M. Gijs; G. Huszka 

Scientific Reports. 2018-10-12. Vol. 8, p. 15211. DOI : 10.1038/s41598-018-33604-7.

Turning a normal microscope into a super-resolution instrument using a scanning microlens array

G. Huszka; M. Gijs 

Scientific Reports. 2018. Vol. 8, p. 601. DOI : 10.1038/s41598-017-19039-6.

Reversible and long-term immobilization in a hydrogel-microbead matrix for high-resolution imaging of Caenorhabditis elegans and other small organisms

L. Dong; M. Cornaglia; G. Krishnamani; J. Zhang; L. Mouchiroud et al. 

PLOS ONE. 2018. Vol. 13, num. 3, p. e0193989. DOI : 10.1371/journal.pone.0193989.

Paper-Based Polymer Electrodes for Bioanalysis and Electrochemistry of Neurotransmitters

R. Trouillon; M. Gijs 

CHEMPHYSCHEM. 2018. Vol. 19, num. 10, p. 1164-1172. DOI : 10.1002/cphc.201701124.

Nucleation and Growth Behavior of CdSe Nanocrystals Synthesized in the Presence of Oleylamine Coordinating Ligand

X. Huang; V. K. Parashar; M. Gijs 

Langmuir. 2018. Vol. 34, num. 21, p. 6070-6076. DOI : 10.1021/acs.langmuir.7b01337.

Micro-optics for microfluidic analytical applications

H. Yang; M. Gijs 

CHEMICAL SOCIETY REVIEWS. 2018. Vol. 47, num. 4, p. 1391-1458. DOI : 10.1039/c5cs00649j.

Microfluidics-enabled phenotyping of a whole population of C. elegans worms over their embryonic and post-embryonic development at single-organism resolution

M. Letizia; M. Cornaglia; R. Trouillon; V. Sorrentino; L. Mouchiroud et al. 

Microsystems & Nanoengineering. 2018. Vol. 4, p. 6. DOI : 10.1038/s41378-018-0003-8.

Microfluidic extraction and microarray detection of biomarkers from cancer tissue slides

H. Nguyen; L. Dupont; A. Jean; T. Gehin; Y. Chevolot et al. 

Journal of Micromechanics and Microengineering. 2018. Vol. 28, num. 3, p. 034004. DOI : 10.1088/1361-6439/aaa7a1.

Integrated Microfluidic Device for Drug Studies of Early C. Elegans Embryogenesis

L. Dong; R. Jankele; M. Cornaglia; T. Lehnert; P. Gönczy et al. 

Advanced Science. 2018. Vol. 5, num. 5, p. 1700751. DOI : 10.1002/advs.201700751.

Dynamic microfluidic nanocalorimetry system for measuring Caenorhabditis elegans metabolic heat

R. Krenger; T. Lehnert; M. Gijs 

LAB ON A CHIP. 2018. Vol. 18, num. 11, p. 1641-1651. DOI : 10.1039/c8lc00238j.

Breast cancer HER2 analysis by extra-short incubation microfluidics-assisted fluorescence in situ hybridization (ESIMA FISH)

H. Nguyen; L. Dupont; E. Cuttaz; A. Jean; R. Trouillon et al. 

MICROELECTRONIC ENGINEERING. 2018. Vol. 189, p. 33-38. DOI : 10.1016/j.mee.2017.12.008.

A design of experiment approach for efficient multi-parametric drug testing using a Caenorhabditis elegans model

M. C. Letizia; M. Cornaglia; G. Tranchida; R. Trouillon; M. A. M. Gijs 

Integrative Biology. 2018. Vol. 10, num. 1, p. 48-56. DOI : 10.1039/C7IB00184C.

2017

A multiscale study of the role of dynamin in the regulation of glucose uptake

R. Trouillon; M. C. Letizia; K. J. Menzies; L. Mouchiroud; J. Auwerx et al. 

Integrative Biology. 2017. Vol. 9, num. 10, p. 810-819. DOI : 10.1039/c7ib00015d.

Deguelin exerts potent nematocidal activity via the mitochondrial respiratory chain

S. Preston; P. K. Korhonen; L. Mouchiroud; M. Cornaglia; S. L. Mcgee et al. 

Faseb Journal. 2017. Vol. 31, num. 10, p. 4515-4532. DOI : 10.1096/fj.201700288R.

Microfluidic-assisted chromogenic in situ hybridization (MA-CISH) for fast and accurate breast cancer diagnosis

H. T. Nguyen; L. S. Bernier; A. M. Jean; R. Trouillon; M. Gijs 

Microelectronic Engineering. 2017. Vol. 183-184, p. 52-57. DOI : 10.1016/j.mee.2017.10.007.

Microfluidics for rapid cytokeratin immunohistochemical staining in frozen sections

S. Brajkovic; D. G. Dupouy; L. De Leval; M. A. Gijs 

Laboratory Investigation. 2017. Vol. 97, num. 8, p. 983-991. DOI : 10.1038/labinvest.2017.49.

Microsphere-based super-resolution scanning optical microscope

G. Huszka; H. Yang; M. A. M. Gijs 

Optics Express. 2017. Vol. 25, num. 13, p. 15079-15092. DOI : 10.1364/Oe.25.015079.

Sensitive and inexpensive digital DNA analysis by microfluidic enrichment of rolling circle amplified single-molecules

M. Kuhnemund; I. Hernandez-Neuta; M. I. Sharif; M. Cornaglia; M. A. M. Gijs et al. 

Nucleic Acids Research. 2017. Vol. 45, num. 8, p. e59. DOI : 10.1093/nar/gkw1324.

Microfluidics-assisted fluorescence in situ hybridization for advantageous human epidermal growth factor receptor 2 assessment in breast cancer

H. T. Nguyen; R. Trouillon; S. Matsuoka; M. Fiche; L. De Leval et al. 

Laboratory Investigation. 2017. Vol. 97, num. 1, p. 93-103. DOI : 10.1038/labinvest.2016.121.

2016

Track C. Biomedical Instrumentation & Micro and Nano Systems

M. Cornaglia; L. Mouchiroud; G. Krishnamani; A. Marette; S. Narasimhan et al. 

Biomedical Engineering / Biomedizinische Technik. 2016. Vol. 61, num. s1, p. 24-29. DOI : 10.1515/bmt-2016-5002.

Understanding the mixing process in 3D microfluidic nozzle/diffuser systems: simulations and experiments

A. Sayah; M. A. M. Gijs 

Journal Of Micromechanics And Microengineering. 2016. Vol. 26, num. 11, p. 115017. DOI : 10.1088/0960-1317/26/11/115017.

On-chip microfluidic biocommunication assay for studying male-induced demise in C. elegans hermaphrodites

L. Dong; M. Cornaglia; T. Lehnert; M. A. M. Gijs 

Lab On A Chip. 2016. Vol. 16, num. 23, p. 4534-4545. DOI : 10.1039/c6lc01005a.

Synergistic effect of carboxylic and amine ligands on the synthesis of CdSe nanocrystals

X. Huang; V. K. Parashar; M. A. M. Gijs 

Rsc Advances. 2016. Vol. 6, num. 91, p. 88911-88915. DOI : 10.1039/c6ra20812f.

Super-Resolution Imaging of a Dielectric Microsphere Is Governed by the Waist of Its Photonic Nanojet

H. Yang; R. Trouillon; G. Huszka; M. A. M. Gijs 

Nano Letters. 2016. Vol. 16, num. 8, p. 4862-4870. DOI : 10.1021/acs.nanolett.6b01255.

Dynamic electrochemical quantitation of dopamine release from a cells-on-paper system

R. Trouillon; M. A. M. Gijs 

Rsc Advances. 2016. Vol. 6, num. 37, p. 31069-31073. DOI : 10.1039/c6ra02487d.

Versatile size-dependent sorting of C-elegans nematodes and embryos using a tunable microfluidic filter structure

L. Dong; M. Cornaglia; T. Lehnert; M. A. M. Gijs 

Lab On A Chip. 2016. Vol. 16, num. 3, p. 574-585. DOI : 10.1039/c5lc01328c.

Continuous quantification of HER2 expression by microfluidic precision immunofluorescence estimates HER2 gene amplification in breast cancer

D. G. Dupouy; A. T. Ciftlik; M. Fiche; D. Heintze; B. Bisig et al. 

Scientific Reports. 2016-02-09. Vol. 6, p. 20277. DOI : 10.1038/srep20277.

Automated longitudinal monitoring of in vivo protein aggregation in neurodegenerative disease C. elegans models

M. Cornaglia; G. Krishnamani; L. Mouchiroud; V. Sorrentino; T. Lehnert et al. 

Molecular Neurodegeneration. 2016. Vol. 11, p. 17. DOI : 10.1186/s13024-016-0083-6.

2015

Nanocalorimetric platform for accurate thermochemical studies in microliter volumes

R. Padovani; T. Lehnert; R. Trouillon; M. Gijs 

RSC Advances. 2015. Vol. 118, num. 5, p. 97133-97142. DOI : 10.1039/C5RA22248F.

Interplay between the potential waveform and diffusion layer dynamics determines the time-response of voltammetric detection in microchannels

R. Trouillon; M. A. M. Gijs 

Electrochimica Acta. 2015. Vol. 166, p. 223-231. DOI : 10.1016/j.electacta.2015.02.165.

Inflammatory and metabolic responses to high-fat meals with and without dairy products in men

A. Schmid; N. Petry; B. Walther; U. Buetikofer; W. Luginbuehl et al. 

British Journal Of Nutrition. 2015. Vol. 113, num. 12, p. 1853-1861. DOI : 10.1017/S0007114515000677.

Optical microscopy using a glass microsphere for metrology of sub-wavelength nanostructures

H. Yang; M. A. M. Gijs 

Microelectronic Engineering. 2015. Vol. 143, p. 86-90. DOI : 10.1016/j.mee.2015.03.072.

Dose-response curve of a microfluidic magnetic bead-based surface coverage sandwich assay

M. Cornaglia; R. Trouillon; H. C. Tekin; T. Lehnert; M. A. M. Gijs 

New Biotechnology. 2015. Vol. 32, num. 5, p. 433-440. DOI : 10.1016/j.nbt.2015.03.008.

Fixed-structure LPV Discrete-time Controller Design with Induced l2-Norm and H2 Performance

Z. Emedi; A. Karimi 

International Journal of Control. 2015. Vol. 89, num. 3, p. 494-505. DOI : 10.1080/00207179.2015.1081986.

An automated microfluidic platform for C. elegans embryo arraying, phenotyping, and long-term live imaging

M. Cornaglia; L. Mouchiroud; A. Marette; S. Narasimhan; T. Lehnert et al. 

Scientific Reports. 2015. Vol. 5, p. 10192. DOI : 10.1038/srep10192.

Photonic Nanojet Array for Fast Detection of Single Nanoparticles in a Flow

H. Yang; M. Cornaglia; M. A. M. Gijs 

Nano Letters. 2015. Vol. 15, num. 3, p. 1730-1735. DOI : 10.1021/nl5044067.

Separation of magnetic microparticles in segmented flow using asymmetric splitting regimes

B. Verbruggen; T. Toth; M. Cornaglia; R. Puers; M. A. M. Gijs et al. 

Microfluidics And Nanofluidics. 2015. Vol. 18, num. 1, p. 91-102. DOI : 10.1007/s10404-014-1409-8.

Digital microfluidics for time-resolved cytotoxicity studies on single non-adherent yeast cells

P. T. Kumar; K. Vriens; M. Cornaglia; M. Gijs; T. Kokalj et al. 

Lab On A Chip. 2015. Vol. 15, num. 8, p. 1852-1860. DOI : 10.1039/c4lc01469c.

Spherical superstructures of oxide nanoparticles for catalytic reactions in microchemical reactors

V. K. Parashar; J. B. Wacker; M. A. M. Gijs 

Materials Letters. 2015. Vol. 139, p. 182-186. DOI : 10.1016/j.matlet.201.4.10.066.

Fixed-structure H-2 controller design for polytopic systems via LMIs

A. Sadeghzadeh; A. Karimi 

Optimal Control Applications and Methods. 2015. Vol. 36, num. 6, p. 794-809. DOI : 10.1002/oca.2132.

2014

Programming and use of Parylene C fluorescence as a quantitative on-chip reference

D. G. Dupouy; A. T. Ciftlik; J. Teixidor; M. A. M. Gijs 

Rsc Advances. 2014. Vol. 4, num. 90, p. 49367-49373. DOI : 10.1039/c4ra08982k.

Microfluidic chip for monitoring Ca2+ transport through a confluent layer of intestinal cells

C. Huang; Q. Ramadan; J. B. Wacker; H. C. Tekin; C. Ruffert et al. 

Rsc Advances. 2014. Vol. 4, num. 95, p. 52887-52891. DOI : 10.1039/c4ra09370d.

A microfluidic process for on-chip formation of assemblies of oxide nanoparticles

V. K. Parashar; J. B. Wacker; D. Necula; M. A. M. Gijs 

Rsc Advances. 2014. Vol. 4, num. 69, p. 36725-36728. DOI : 10.1039/c4ra06188h.

Magnetic Particle-Scanning for Ultrasensitive Immunodetection On-Chip

M. Cornaglia; R. Trouillon; H. C. Tekin; T. Lehnert; M. A. M. Gijs 

Analytical Chemistry. 2014. Vol. 86, num. 16, p. 8213-8223. DOI : 10.1021/ac501568g.

Fabrication of a high aspect ratio (HAR) micropillar filter for a magnetic bead-based immunoassay

C. Ruffert; Q. Ramadan; M. A. M. Gijs 

Microsystem Technologies-Micro-And Nanosystems-Information Storage And Processing Systems. 2014. Vol. 20, num. 10-11, p. 1869-1873. DOI : 10.1007/s00542-013-1964-z.

A dose-response strategy reveals differences between normal-weight and obese men in their metabolic and inflammatory responses to a high-fat meal

F. Schwander; K. A. Kopf-Bolanz; C. Buri; R. Portmann; L. Egger et al. 

Journal Of Nutrition. 2014. Vol. 144, num. 10, p. 1517-1523. DOI : 10.3945/jn.114.193565.

Fabrication of Biocompatible Monolithic Microchannels with High Pressure-Resistance Using Direct Polymerization of PEG-Modified PMMA

C. De Marco; C. Credi; F. Briatico-Vangosa; E. Bianchi; A. T. Ciftlik et al. 

Journal Of Applied Polymer Science. 2014. Vol. 131, num. 21, p. 41031. DOI : 10.1002/app.41031.

Cathodic pretreatment improves the resistance of boron-doped diamond electrodes to dopamine fouling

R. Trouillon; Y. Einaga; M. Gijs 

Electrochemistry Communications. 2014. Vol. 47, p. 92-95. DOI : 10.1016/j.elecom.2014.07.028.

Delayed voltammetric with respect to amperometric electrochemical detection of concentration changes in microchannels

R. Trouillon; M. A. M. Gijs 

Lab On A Chip. 2014. Vol. 14, num. 16, p. 2929-2940. DOI : 10.1039/c4lc00493k.

Super-Resolution Biological Microscopy Using Virtual Imaging by a Microsphere Nanoscope

H. Yang; N. Moullan; J. Auwerx; M. A. M. Gijs 

Small. 2014. Vol. 10, num. 9, p. 1712-1718. DOI : 10.1002/smll.201302942.

A highly efficient extraction protocol for magnetic particles on a digital microfluidic chip

N. Vergauwe; S. Vermeir; J. B. Wacker; F. Ceyssens; M. Cornaglia et al. 

Sensors And Actuators B-Chemical. 2014. Vol. 196, p. 282-291. DOI : 10.1016/j.snb.2014.01.076.

Impact of milk processing on the generation of peptides during digestion

K. A. Kopf-Bolanz; F. Schwander; M. Gijs; G. Vergeres; R. Portmann et al. 

International Dairy Journal. 2014. Vol. 35, num. 2, p. 130-138. DOI : 10.1016/j.idairyj.2013.10.012.

2013

High Throughput-Per-Footprint Inertial Focusing

A. T. Ciftlik; M. Ettori; M. A. M. Gijs 

Small. 2013. Vol. 9, num. 16, p. 2764-2773. DOI : 10.1002/smll.201201770.

Ultrasensitive protein detection: a case for microfluidic magnetic bead-based assays

H. C. Tekin; M. A. M. Gijs 

Lab on a Chip. 2013. Vol. 13, p. 4711-4739. DOI : 10.1039/C3LC50477H.