Tham khảo tài liệu 'biomedical engineering trends in materials science part 16', kỹ thuật - công nghệ, cơ khí - chế tạo máy phục vụ nhu cầu học tập, nghiên cứu và làm việc hiệu quả | 442 Biomedical Engineering Trends in Materials Science transduction and amplification causing initiation of programmed cell death. Future efforts could focussed on 1 testing different cancer cell line including human cell line 2 use the microdisk in in vivo models by combining low-frequency magnetomechanical destruction and high frequency thermal ablation fields and 3 exploring scalability of this approach down to 100nm dimentions. 7. Acknowledgements We thank our collaborators Drs. S. D. Bader R. Divan . Kim J. Pearson T. Rajh V. G. Yefremenko from Argonne Drs. V. Bindokas M. S. Lesniak and I. V. Ulasov from the University of Chicago for continued involvement and interest to this project. Work at Argonne and its Center for Nanoscale Materials and Electron Microscopy Center is supported by the US Department of Energy Office of Science Basic Energy Sciences under contract No De-AC02-06CH11357. 8. References Ade H. Stoll H. Near-edge X-ray absorption fine-structure microscopy of organic and magnetic materials. Nature Materials vol. 8 pp. 281-290 2009 . Boehning D. Patterson R. L. Sedaghat L. Glebova N. O. Kurosaki T. Snyder S. H. Cytochrome c binds to inositol 1 4 5 trisphosphate receptors amplifying calciumdependent apoptosis. Nature Cell Biology vol. 5 pp. 1051 - 1061 2003 . Clapham D. E. Calcium signaling. Cell 80 259-268 1995 . Chung . McMichael R. Pierce D J. Unguris Phase diagram of magnetic nanodisks measured by scanning electron microscopy with polarization analysis. Physical Review B vol. 81 024410 2010 . Cowburn R. P. Koltsov D. K. Adeyeye A. O. and Welland M. E. Single-Domain Circular Nanomagnets Phys. Rev. Lett. Vol. 83 pp. 1042-1045 1999 . Da K. Shiyama K. Naka R. Hiyama A. Anishi T. GFAP-positive human glioma cell lines no. 10 . Human Cell vol. 3 pp. 251-256 1990 . Debinski W. Gibo D. Hulet S. Connor J. Gillespie G. Receptor for interleukin 13 is a marker and therapeutic target for human high-grade gliomas. Cancer Res. pp. 985-990 .