MEMS 기술과 차세대 생물산업

  • Published : 2001.03.01

Abstract

Keywords

References

  1. J Micromech. MicroEng. v.10 Micro-systems in biomedical applications Dario, P.;Carrozza, M. C.;Benvenuto, A.;Menciassi, A.
  2. 한국정밀공학회지 v.17 no.11 유전자진단을 위한 칩 위의 실험실 임근배;조윤경
  3. Anal. Chem. v.72 Lab-on-a-chip: A revolution in biological and medical science Figeys, D.;Pinto, D.
  4. Science v.288 Separation of long DNA molecules in a microfabricated entropic trap array Han, J.;Craighead, H. G.
  5. Int. Conf. Micro Elect. Mech. Sys. (MEMS 98) Microfabricated capillary-driven stop valve and sample injector Man, P. F.;Mastrangelo, C. H.;Burns, M. A.;Burke, D. T.
  6. MEMS 97 Microfluidic plastic capillaries on silicon substrate Man, P. F.;Jones, D. K.;Mastrangelo, C. H.
  7. Trend in Analytical Chemistry v.19 Chip-based microsystems for genomic and proteomic analysis Sanders, G. H.;Manz, A.
  8. Science v.280 Chemical amplification:continuousflow PCR on a chip Kopp, D. U.;Mello, A. J.;Manz, A.
  9. Accepted in Anal. Chem. Monolithic capillary electrophoresis device with integrated fluorescence detector Webster, J. R.;Burns, M. A.;Burke, D. T.;Mastrangelo, C. H.
  10. Nucleic Acids Res. v.25 Electric field directed nucleic acid hybridization on microchips Edman, C. F.;Raymond, D. E.;Wu, D. E.;Tu, E. G.;Sosnowski, R. G.;Burtler, W. F.;Nerenberg, M.;Heller, M. J.
  11. Science v.288 Translating biomolecular recognition into nanomechanics Friz, J.;Baller, M. K.;Lang, H. P.;Rothuizen, H.;Vettiger, P.;Meyer, E.;Guntherodt, J.;Gerber, C.;Gimzewski, J. K.
  12. Anal. Chem. v.70 Kinetic measurements of DNA hybridization on an oligonucleotide-immobilized 27 MHz quartz crystal microbalance Okahata, Y.;Kawase, M.;Niikura, K.;Ohtake, F.;Furusawa, H.;Ebara, Y.
  13. Anal. Chem. v.69 MALDI on a chip Little, D. P.;Cornish, T. J.;O'Donell, M. J.;Braun, A.;Cotter, R. J.;Koster, H.