Your browser doesn't support javascript.
loading
Magnetic Detection Structure for Lab-on-Chip Applications Based on the Frequency Mixing Technique.
Rabehi, Amine; Garlan, Benjamin; Achtsnicht, Stefan; Krause, Hans-Joachim; Offenhäusser, Andreas; Ngo, Kieu; Neveu, Sophie; Graff-Dubois, Stephanie; Kokabi, Hamid.
Affiliation
  • Rabehi A; Laboratoire d'Electronique et d'Electromagnétisme, Sorbonne Université, L2E, 75252 Paris, France. amine.rabehi@sorbonne-universite.fr.
  • Garlan B; Laboratoire d'Electronique et d'Electromagnétisme, Sorbonne Université, L2E, 75252 Paris, France. benjamin.garlan@gmail.com.
  • Achtsnicht S; Institute of Bioelectronics (ICS-8), Forschungszentrum Jülich, 52428 Jülich, Germany. s.achtsnicht@fz-juelich.de.
  • Krause HJ; Institute of Bioelectronics (ICS-8), Forschungszentrum Jülich, 52428 Jülich, Germany. h.-j.krause@fz-juelich.de.
  • Offenhäusser A; Institute of Bioelectronics (ICS-8), Forschungszentrum Jülich, 52428 Jülich, Germany. a.offenhaeusser@fz-juelich.de.
  • Ngo K; Laboratoire Interfaces et Systèmes Électrochimiques, LISE, Sorbonne Université, CNRS, F 75005 Paris, France. kieu.ngo@sorbonne-universite.fr.
  • Neveu S; PHENIX, Sorbonne Université, CNRS, F 75005 Paris, France. sophie.neveu@sorbonne-universite.fr.
  • Graff-Dubois S; Faculte de Medecine, Sorbonne Université, CIMI-PARIS, UMRS CR7-Inserm U1135-CNRS ERL 8255, 75013 Paris, France. stephanie.graff-dubois@sorbonne-universite.fr.
  • Kokabi H; Laboratoire d'Electronique et d'Electromagnétisme, Sorbonne Université, L2E, 75252 Paris, France. hamid.kokabi@sorbonne-universite.fr.
Sensors (Basel) ; 18(6)2018 May 29.
Article in En | MEDLINE | ID: mdl-29844260
A magnetic frequency mixing technique with a set of miniaturized planar coils was investigated for use with a completely integrated Lab-on-Chip (LoC) pathogen sensing system. The system allows the detection and quantification of superparamagnetic beads. Additionally, in terms of magnetic nanoparticle characterization ability, the system can be used for immunoassays using the beads as markers. Analytical calculations and simulations for both excitation and pick-up coils are presented; the goal was to investigate the miniaturization of simple and cost-effective planar spiral coils. Following these calculations, a Printed Circuit Board (PCB) prototype was designed, manufactured, and tested for limit of detection, linear response, and validation of theoretical concepts. Using the magnetic frequency mixing technique, a limit of detection of 15 µg/mL of 20 nm core-sized nanoparticles was achieved without any shielding.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Diagnostic_studies Language: En Journal: Sensors (Basel) Year: 2018 Type: Article Affiliation country: France

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Diagnostic_studies Language: En Journal: Sensors (Basel) Year: 2018 Type: Article Affiliation country: France