Nanotechnology for Biomedical Imaging and Diagnostics: From by Mikhail Y. Berezin

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By Mikhail Y. Berezin

Nanotechnology for Biomedical Imaging and Diagnostics: From Nanoparticle layout to scientific Applications displays upon the expanding function of nanomaterials in organic and clinical imaging, presenting a thorough description of present learn in addition to destiny instructions. With contributions from specialists in nanotechnology and imaging from academia, undefined, and healthcare, this e-book offers a accomplished insurance of the sphere, starting from the architectural layout of nanomaterials to their extensive imaging purposes in medicine.

Grouped into 3 sections, the book:

  • Elucidates all significant elements of nanotechnology and bioimaging
  • Provides finished assurance of the sector, starting from the architectural layout of nanomaterials to their huge imaging purposes in medicine
  • Written by means of well-recognized specialists in academia, undefined, and healthcare, should be an excellence resource of reference
  • With a multidisciplinary technique and a stability of study and diagnostic subject matters, this e-book will entice scholars, scientiests, and healthcare pros alike

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Extra resources for Nanotechnology for Biomedical Imaging and Diagnostics: From Nanoparticle Design to Clinical Applications

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Acta Naturae 2011;3:34–55. [7] Levy PW, Greuling E. 7-day Au198. Phys Rev 1949;75:819. [8] Wheeler HB, Jaques WE, Botsford TW. Experiences with the use of radioactive colloidal gold in the treatment of cancer. Ann Surg 1955;141:208. [9] Mellgren JAN, Knutsson F, Norin T. Localization and effect of injected radioactive gold (Au198) in the treatment of malignant tumors. Acta Pathol Microbiol Scand 1954;34: 393–409. [10] Wagner HN. Current research in nuclear medicine. Am J Roentgenol 1970;109: 668–675.

Relaxation enhancement using liposomes carrying paramagnetic species. Magn Reson Imaging 1984;2:107–112. References 21 [38] Navon G, Panigel R, Valensin G. Liposomes containing paramagnetic macromolecules as MRI contrast agents. Magn Reson Med 1986;3:876–880. [39] Renshaw PF, Owen CS, McLaughlin AC, Frey TG, Leigh JS. Ferromagnetic contrast agents: a new approach. Magn Reson Med 1986;3:217–225. [40] Dias MHM, Lauterbur PC. Ferromagnetic particles as contrast agents for magnetic resonance imaging of liver and spleen.

These nanoparticles, prepared from ferric and ferrous chlorides, were covered with cross-linked albumin to decrease potential metal toxicity and showed significant reduction of both T1 and T2 at relatively low particle concentration in rats. At the same time, P. Lauterbur’s group from the State University of New York, Stony Brook, reported enhanced imaging of the abdomen in dogs using 50 nm magnetite nanoparticles [40]. (The contribution of P. ) Both Leigh’s and Lauterbur’s groups predicted the success of ferromagnetic nanoparticles in future biomedical research and clinical diagnosis.

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