Nanorobòtica (Catalan Wikipedia)

Analysis of information sources in references of the Wikipedia article "Nanorobòtica" in Catalan language version.

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MolecularAssembler.com

albanylawjournal.org

archive.today

azonano.com

caltech.edu

its.caltech.edu

cancer.gov

nano.cancer.gov

cannxs.org

doi.org

dx.doi.org

  • Ghosh, A., Fischer, P. «Controlled Propulsion of Artificial Magnetic Nanostructured Propellers». Nano Letters, 9, 6, 2009, pàg. 2243–2245. DOI: 10.1021/nl900186w. PMID: 19413293.
  • Sierra, D. P., Weir, N. A., Jones, J. F. «A review of research in the field of nanorobotics». U.S. Department of Energy - Office of Scientific and Technical Information Oak Ridge, TN, SAND2005-6808, 2005, pàg. 1–50. DOI: 10.2172/875622.
  • Tarakanov, A. O., Goncharova, L. B., Tarakanov Y. A. «Carbon nanotubes towards medicinal biochips». Wiley Interdisciplinary Reviews: Nanomedicine and Nanobiotechnology, 2, 1, 2009, pàg. 1–10. DOI: 10.1002/wnan.69.
  • Ignatyev, M. B. «Necessary and sufficient conditions of nanorobot synthesis». Doklady Mathematics, 82, 1, 2010, pàg. 671–675. DOI: 10.1134/S1064562410040435.
  • Cerofolini, G., Amato, P., Masserini, M., Mauri, G. «A Surveillance System for Early-Stage Diagnosis of Endogenous Diseases by Swarms of Nanobots». Advanced Science Letters, 3, 4, 2010, pàg. 345–352. DOI: 10.1166/asl.2010.1138.
  • Yarin, A. L. «Nanofibers, nanofluidics, nanoparticles and nanobots for drug and protein delivery systems». Scientia Pharmaceutica Central European Symposium on Pharmaceutical Technology, 78, 3, 2010, pàg. 542. DOI: 10.3797/scipharm.cespt.8.L02.
  • Wang, J. «Can Man-Made Nanomachines Compete with Nature Biomotors?». ACS Nano, 3, 1, 2009, pàg. 4–9. DOI: 10.1021/nn800829k. PMID: 19206241.
  • Amrute-Nayak, M., Diensthuber, R. P., Steffen, W., Kathmann, D., Hartmann, F. K., Fedorov, R., Urbanke, C., Manstein, D. J., Brenner, B., Tsiavaliaris, G. «Targeted Optimization of a Protein Nanomachine for Operation in Biohybrid Devices». Angewandte Chemie, 122, 2, 2010, pàg. 322–326. DOI: 10.1002/ange.200905200.
  • Patel, G. M., Patel, G. C., Patel, R. B., Patel, J. K., Patel, M. «Nanorobot: A versatile tool in nanomedicine». Journal of Drug Targeting, 14, 2, 2010, pàg. 63–67. DOI: 10.1080/10611860600612862. PMID: 16608733.
  • Wang, J. et al . «Micromachine Enables Capture and Isolation of Cancer Cells in Complex Media». Angew Chem. Int. Ed., 50, 2011, pàg. 4161–4165. DOI: 10.1002/anie.201100115.
  • Fisher, B. «Biological Research in the Evolution of Cancer Surgery: A Personal Perspective». Cancer Research, 68, 24, 2008, pàg. 10007–10020. DOI: 10.1158/0008-5472.CAN-08-0186. PMID: 19074862.
  • Cavalcanti, A., Shirinzadeh, B., Zhang, M. & Kretly, L.C. «Nanorobot Hardware Architecture for Medical Defense». Sensors, 8, 5, 2008, pàg. 2932–2958. DOI: 10.3390/s8052932.
  • Hill, C., Amodeo, A., Joseph, J.V. & Patel, H.R.H. «Nano- and microrobotics: how far is the reality?». Expert Review of Anticancer Therapy, 8, 12, 2008, pàg. 1891–1897. DOI: 10.1586/14737140.8.12.1891. PMID: 19046109.
  • Cale, T.S., Lu, J.-Q. & Gutmann, R.J. «Three-dimensional integration in microelectronics: Motivation, processing, and thermomechanical modeling». Chemical Engineering Communications, 195, 8, 2008, pàg. 847–888. DOI: 10.1080/00986440801930302.
  • Couvreur, P. & Vauthier, C. «Nanotechnology: Intelligent Design to Treat Complex Disease». Pharmaceutical Research, 23, 7, 2006, pàg. 1417–1450. DOI: 10.1007/s11095-006-0284-8. PMID: 16779701.
  • Elder, J.B., Hoh, D.J., Oh, B.C., Heller, A.C., Liu, C.Y. & Apuzzo, M.L. «The future of cerebral surgery: a kaleidoscope of opportunities». Neurosurgery, 62, 6, 2008, pàg. 1555–1579. DOI: 10.1227/01.neu.0000333820.33143.0d. PMID: 18695575.
  • Wong, P. C., Wong, K.-K. & Foote H. «Organic data memory using the DNA approach». Communications of the ACM, 46, 1, 2003, pàg. 95–98. DOI: 10.1145/602421.602426.
  • Seeman. N. C. «From genes to machines: DNA nanomechanical devices». Trends in Biochemical Sciences, 30, 3, 2005, pàg. 119–125. DOI: 10.1016/j.tibs.2005.01.007.
  • Montemagno, C. & Bachand, G. «Constructing nanomechanical devices powered by biomolecular motors». Nanotechnology, 10, 3, 1999, pàg. 225–231. DOI: 10.1088/0957-4484/10/3/301.
  • Yin, P., Choi, H. M. T., Calvert, C. R. & Pierce, N. A. «Programming biomolecular self-assembly pathways». Nature, 451, 7176, 2008, pàg. 318–322. DOI: 10.1038/nature06451. PMID: 18202654.
  • Douglas, S. M., Bachelet, I. & Church, G. M. «A Logic-Gated Nanorobot for Targeted Transport of Molecular Payloads». Science, 335, 6070, 2012, pàg. 831–834. DOI: 10.1126/science.1214081.
  • Jin, S. & Ye, K. «Nanoparticle-Mediated Drug Delivery and Gene Therapy». Biotechnology Progress, 23, 1, 2007, pàg. 32–41. DOI: 10.1021/bp060348j.
  • Hede, S., Huilgol, N. «"Nano": The new nemesis of cancer». Journal of Cancer Research and Therapeutics, 2, 4, 2006, pàg. 186–195. DOI: 10.4103/0973-1482.29829. PMID: 17998702.
  • Das, S., Gates, A. J., Abdu, H. A., Rose, G. S., Picconatto, C. A., Ellenbogen, J. C. «Designs for Ultra-Tiny, Special-Purpose Nanoelectronic Circuits». IEEE Transactions on Circuits and Systems I: Regular Papers, 54, 11, 2007, pàg. 2528–2540. DOI: 10.1109/TCSI.2007.907864.
  • Rosso, F., Barbarisi, M., Barbarisi, A. «Technology for Biotechnology». Biotechnology in Surgery, 2011, pàg. 61–73. DOI: 10.1007/978-88-470-1658-3_4.
  • Challacombe, B., Althoefer, K., Stoianovici, D. «Emerging Robotics». New Technologies in Urology, 7, parte I, 2010, pàg. 49–56. DOI: 10.1007/978-1-84882-178-1_7.
  • Murday, J. S., Siegel, R. W., Stein, J., Wright, J. F. «Translational nanomedicine: status assessment and opportunities». Nanomedicine, 5, 3, 2009, pàg. 251–273. DOI: 10.1016/j.nano.2009.06.001. PMID: 19540359.
  • Hogg, T. «Coordinating Microscopic Robots in Viscous Fluids». Autonomous Agents and Multi-Agent Systems, 14, 3, 2007, pàg. 271–305. DOI: 10.1007/s10458-006-9004-3.
  • Cuschieri, A. «Laparoscopic surgery: current status, issues and future developments». Surgeon, 3, 3, 2005, pàg. 125–138. DOI: 10.1016/S1479-666X(05)80032-0.
  • Roco, M. C. «Nanotechnology: convergence with modern biology and medicine». Current Opinion in Biotechnology, 14, 3, 2003, pàg. 337–346. DOI: 10.1016/S0958-1669(03)00068-5. PMID: 12849790.
  • Scheufele, D. A., Lewenstein, B. V. «The Public and Nanotechnology: How Citizens Make Sense of Emerging Technologies». Journal of Nanoparticle Research, 7, 6, 2005, pàg. 659–667. DOI: 10.1007/s11051-005-7526-2.
  • LaVan DA, McGuire T, Langer R. «Small-scale systems for in vivo drug delivery». Nature Biotechnology, 21, 10, 2003. DOI: 10.1038/nbt876. PMID: 14520404.

energy.gov

  • Sierra, D. P., Weir, N. A., Jones, J. F. «A review of research in the field of nanorobotics». U.S. Department of Energy - Office of Scientific and Technical Information Oak Ridge, TN, SAND2005-6808, 2005, pàg. 1–50. DOI: 10.2172/875622.

fda.gov

foresight.org

jpost.com

fr.jpost.com

nano-biology.net

nanorobotdesign.com

nanovip.com

ncd.gov

  • Vaughn JR. «Over the Horizon: Potential Impact of Emerging Trends in Information and Communication Technology on Disability Policy and Practice». National Council on Disability, Washington DC., 2006, pàg. 1–55.

neurosurgery-online.com

nih.gov

ncbi.nlm.nih.gov

  • Ghosh, A., Fischer, P. «Controlled Propulsion of Artificial Magnetic Nanostructured Propellers». Nano Letters, 9, 6, 2009, pàg. 2243–2245. DOI: 10.1021/nl900186w. PMID: 19413293.
  • Wang, J. «Can Man-Made Nanomachines Compete with Nature Biomotors?». ACS Nano, 3, 1, 2009, pàg. 4–9. DOI: 10.1021/nn800829k. PMID: 19206241.
  • Patel, G. M., Patel, G. C., Patel, R. B., Patel, J. K., Patel, M. «Nanorobot: A versatile tool in nanomedicine». Journal of Drug Targeting, 14, 2, 2010, pàg. 63–67. DOI: 10.1080/10611860600612862. PMID: 16608733.
  • Fisher, B. «Biological Research in the Evolution of Cancer Surgery: A Personal Perspective». Cancer Research, 68, 24, 2008, pàg. 10007–10020. DOI: 10.1158/0008-5472.CAN-08-0186. PMID: 19074862.
  • Hill, C., Amodeo, A., Joseph, J.V. & Patel, H.R.H. «Nano- and microrobotics: how far is the reality?». Expert Review of Anticancer Therapy, 8, 12, 2008, pàg. 1891–1897. DOI: 10.1586/14737140.8.12.1891. PMID: 19046109.
  • Couvreur, P. & Vauthier, C. «Nanotechnology: Intelligent Design to Treat Complex Disease». Pharmaceutical Research, 23, 7, 2006, pàg. 1417–1450. DOI: 10.1007/s11095-006-0284-8. PMID: 16779701.
  • Elder, J.B., Hoh, D.J., Oh, B.C., Heller, A.C., Liu, C.Y. & Apuzzo, M.L. «The future of cerebral surgery: a kaleidoscope of opportunities». Neurosurgery, 62, 6, 2008, pàg. 1555–1579. DOI: 10.1227/01.neu.0000333820.33143.0d. PMID: 18695575.
  • Yin, P., Choi, H. M. T., Calvert, C. R. & Pierce, N. A. «Programming biomolecular self-assembly pathways». Nature, 451, 7176, 2008, pàg. 318–322. DOI: 10.1038/nature06451. PMID: 18202654.
  • Hede, S., Huilgol, N. «"Nano": The new nemesis of cancer». Journal of Cancer Research and Therapeutics, 2, 4, 2006, pàg. 186–195. DOI: 10.4103/0973-1482.29829. PMID: 17998702.
  • Murday, J. S., Siegel, R. W., Stein, J., Wright, J. F. «Translational nanomedicine: status assessment and opportunities». Nanomedicine, 5, 3, 2009, pàg. 251–273. DOI: 10.1016/j.nano.2009.06.001. PMID: 19540359.
  • Roco, M. C. «Nanotechnology: convergence with modern biology and medicine». Current Opinion in Biotechnology, 14, 3, 2003, pàg. 337–346. DOI: 10.1016/S0958-1669(03)00068-5. PMID: 12849790.
  • LaVan DA, McGuire T, Langer R. «Small-scale systems for in vivo drug delivery». Nature Biotechnology, 21, 10, 2003. DOI: 10.1038/nbt876. PMID: 14520404.

physorg.com

spie.org

upenn.edu

repository.upenn.edu

web.archive.org

wipo.int

wsgr.com

zyvex.com

  • Zyvex: "Auto Replicación y Nanotecnología" (anglès) "los sistemas autoreplicante artificiales sólo funcionarán en ambientes artificiales cuidadosamente controlados .