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REVIEW ARTICLE

The Korean Research & Development Program on Micro‐Electro‐Mechanical Systems (MEMS) in medical applications

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Pages 109-119 | Published online: 10 Jul 2009

References

  • Chang J. K., Chung S., Lee Y., Park J., et al. Intravascular Micro Active Catheter for Minimal Invasive Surgery. IEEE‐EMBS Special Topic Conference on Microtechnologies in Medicine & Biology,. Oct 12‐14. LyonFrance 2000; 243–6
  • National Nanofab Center (www.nnfc.com).
  • Korea Advanced Nano Fab Center (www.kanc.re.kr).
  • Given Imaging LTD., www.givenimaging.com.
  • Intelligent Microsystem Center, www.microsystem.
  • Sokal N. O., Sokal A. D. Class E‐A new Class of High‐Efficiency Tuned Single‐Ended Switching Power Amplifers. IEEE Journal of Solid‐State Circuits, SC‐10, June 1975
  • Mackay R. S. Radio telemetering from within the human body. IRE Trans. Med. Electron 1959; 6: 100–5
  • Togawa T., Tamura T., Oberg P. A. Biomedical Transducers and Instruments. CRC press. 1997; 13–71
  • Johannessen E. A., Wang L., Cui L., Tang T. B., et al. Implementation of Multichannel Sensors for Remote Biomedical Measurements in a Microsystems Format. IEEE Tran. Biomedical Engineering 2004; 51: 525–35
  • Rebello K. J. Applications of MEMS in Surgery. Proc IEEE 2004; 1: 92
  • Dario P., Carrozza M. C., Benvenuto A., Menciassi A. Micro‐systems in biomedical applications. J. Micromech. Microeng 2000; 10: 235–44
  • Lee J. H., Hwang K. S., Park J., Yoon K. H., et al. Immunoassay of prostate‐specific antigen (PSA) using resonant frequency shift of piezoelectric nanomechanical microcantilever. Biosens. Bioelectron 2005; 20: 2157–62
  • Wu G. H., Datar R. H., Hansen K. M., Thundat T., et al. Multiple label‐free biodetection and quantitative DNA‐binding assays on a nanomechanical cantilever array. Nat. Biotechnol 2001; 19: 856–60
  • Lee J. H., Yoon K. H., Hwang K. S., Park J., et al. In‐situ quantitative analysis of a prostate‐specific antigen (PSA) using a nanomechanical PZT cantilever. Biosens. Bioelectron 2004; 20: 269–75
  • Lee J. H., Kim T. S., Yoon K. H. Effect of mass and stress on resonant frequency shift of functionalized Pb(Zr0.52Ti0.48)O3 thin film microcantilever for the detection of C‐reactive protein. Appl. Phys. Lett 2004; 84: 3187–9
  • Hwang K. S., Lee J. H., Park J., Yoon D. S., et al. In‐situ quantitative analysis of a prostate‐specific antigen (PSA) lusinga nanomechanical PZT cantilever. Lab Chip 2004; 4: 547–52
  • Hwang K. S., Eom K., Lee J. H., Chun D. W., et al. Dominant surface stress driven by biomolecular interactions in the dynamical response of nanomechanical microcantilevers. Appl. Phys. Lett 2006; 89: 173905
  • Odorico J. S., Kaufman D. S., Thomson J. A. Multilineage differentiation from human embryonic stem cell lines. Stem Cells 2001; 19: 193–204
  • Lee J. W., Na D. S., Chae S. K., Kim C., et al. Using the chorions of fertilized zebrafish eggs as a biomaterial for the attachment and differentiation of mouse stem cells. Langmuir 2005; 21: 7615–20
  • Chae S. K., Lee I. H., Kim C., Lee C. H., et al. Encapsulation of mouse stem cells in Alginate beads by microlfuidic chip. Proceedings of MicroTAS 2006; 2: 1741–4
  • Jun S. B., Hynd M., Dowell‐Mesfin N., Smith K., et al. Low Density Neuronal Networks Cultured using Patterned Poly‐L‐Laysine on Microelectrode Arrays. J Neurosci Meth 2006, available online since October 2006
  • Lee J. K., Jang E., Lee S. D., Kim S. J. Spatial Patterning of Fibroblast Cells with Fabricating Holographic Patterning on the Photoresponsive Polymer. IEEE annual conference of EMBC, Shanghai, 2005
  • Oh S. J., Song J. K., Kim J. W., Kim S. J. A High Yield Fabrication Process for Silicon Neural Probes. IEEE Trans. Biomed. Eng 2006; 52: 351–4
  • Bjornsson S. J., Oh S. J., Al‐Kohafi Y., Lim Y. J., et al. Effects of Insertion Condition on Tissue Strain and Vascular Damage during Neuroprosthetic Device Insertion. J Neural Eng 2006; 3: 196–207
  • Ro H. S., Koh B. H., Jung S. O., Park H. K., et al. SPR Imaging Protein Array for Analysis of Triple Protein Interactions of HPV E6, E6AP and p53. Proteomics 2006; 6: 2108–2111
  • Jung S. O., Ro H. S., Kho B. H., Shin Y. B., et al. Surface Plasmon Resonance Imaging‐Based Protein Arrays for High‐Throughput Screening of Protein‐Protein Interaction Inhibitors. Proteomics 2005; 5: 4427–31
  • http://nanomed.yonsei.ac.kr
  • Kim K. E., Suck S. D., Sohn M. S., Kang B. K., et al. Temperature dependence of capacitance on DNA solutions. Material Science & Engineering C 2006; 26: 935
  • Hyun S. J., Kim H. S., Kim Y. J., Jung H. I. Mechanical detection of liposomes using piezoresistive cantilever. Sensors and Actuators B 2006; 117: 415
  • Jun Y. W., Huh Y. M., Choi J. S., Lee J. H., et al. Nanoscale size effect of magnetic nanocrystals and their utilization for cancer diagnosis via magnetic resonance imaging. J. Am. Chem. Soc 2005; 127: 5732
  • Song H. T., Huh C. M., Kim S., Jun Y. W., et al. Surface modulation of magnetic nanocrystals in the development of highly efficient magnetic resonance probes for intracellular labeling. J. Am. Chem. Soc 2005; 127: 9992
  • Yang Y., Lee H., Hyung W., Park S. B., et al. Magnetic PECA nanoparticles as drug carriers for targeted delivery; synthesis & release characteristics. J. Microencapsulation 2006; 23: 203–12
  • Huang Y., Mather E. L., Bell J. L., Madou M. MEMS‐based sample preparation for molecular disgnostics. Anal. Bioanal. Chem 2002; 372: 49–65
  • Lichtenberg J. Sample pretreatment on microfabricated devices. Talanta 2002; 56: 233–66
  • Zheng G., Fatolsky F., Cui Y., Wang W. U., et al. Multiplexed electrical detection of cancer markers with nanowire sensor arrays. Nature Biotechnology 2005; 23: 1294–1301
  • Lin B., Qiu J., Gerstenmeier J., Li P., et al. A Label‐Free Optical Technique for Detecting Small Molecule Interactions. Biosensors and Bioelectronics 2002; 17: 827–34

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