X-ray microscopy of biological objects with carbon kappa and with synchrotron radiation
Spiller, E.; Feder, R.; Topalian, J.; Eastman, D.; Gudat, W.; Sayre, D.
Science 191(4232): 1172-1174
1976
ISSN/ISBN: 0036-8075 PMID: 1257741 Document Number: 102438
X-ray micrographs of biological objects were obtained with a resolution better than 1000 .ANG. by using poly(methyl methacrylate) x-ray resist and C K.alpha. or synchrotron radiation. Synchrotron radiation allows short exposure times; storage rings especially designed as radiation sources and improved x-ray resists would make exposure times under 1 s possible.
Document emailed within 1 workday
Related Documents
Abraham-Peskir, J.V. 2000: X-ray microscopy with synchrotron radiation: applications to cellular biology Cellular and Molecular Biology 46(6): 1045-1052Matiukhina, T.G. 1999: Atomic force microscopy--a new method for studying biological objects Morfologiia 115(1): 51-54
Iagubov, A.S.; Kats, V.A. 1974: Current morphometry in electron microscopy of biological and medical objects Vestnik Akademii Meditsinskikh Nauk SSSR 1974(12): 77-83
Kaminskaia, E.V.; Nevzgodina, L.V.; Platova, N.G. 2009: Bio-objects and biological methods of space radiation effects evaluation Aviakosmicheskaia i Ekologicheskaia Meditsina 43(5): 8-12
Yagi, N. 2011: Bone researches using synchrotron radiation Clinical Calcium 21(7): 1030-1035
Graeff, W. 1983: Instrumentation for synchrotron radiation research Acta Radiologica. Supplementum 365: 10-12
Chance, B.; Powers, L. 1983: Application of synchrotron radiation to structural biology Acta Radiologica. Supplementum 365: 21-26
Takano, Y.; Kaneko, T.; Kobayashi, K.; Takahashi, J.I.; Pizzarello, S.; Cronin, J.R. 2001: Formation of asymmetric (correction of asymmetic) bioorganics by synchrotron radiation Uchu Seibutsu Kagaku 15(3): 236-237
Tanaka, A.; Mori, H.; Tanaka, E.; Mohammed, M.U.; Tanaka, Y.; Sekka, T.; Ito, K.; Shinozaki, Y.; Hyodo, K.; Ando, M.; Umetani, K.; Tanioka, K.; Kubota, M.; Abe, S.; Handa, S.; Nakazawa, H. 1999: Branching patterns of intramural coronary vessels determined by microangiography using synchrotron radiation American Journal of Physiology 276(6): H2262-H2267
Ventura, R.; Dill, T.; Dix, W.R.; Lohmann, M.; Job, H.; Kupper, W.; Fattori, R.; Nienaber, C.A.; Hamm, C.W.; Meinertz, T. 2001: Intravenous coronary angiography using synchrotron radiation: technical description and preliminary results Italian Heart Journal: Official Journal of the Italian Federation of Cardiology 2(4): 306-311
Tamaki, M.; Kidoguchi, K.; Mizobe, T.; Koyama, J.; Kondoh, T.; Sakurai, T.; Kohmura, E.; Yokono, K.; Umetani, K. 2006: Carotid artery occlusion and collateral circulation in C57Black/6J mice detected by synchrotron radiation microangiography Kobe Journal of Medical Sciences 52(5): 111-118
Bykov, R.E.; Titov, I.M.; Shvalev, V.N. 1975: Study of some neurohistologic objects by the method of scanning microscopy Arkhiv Anatomii Gistologii i Embriologii 68(4): 91-95
Lu, X.-l.; Zheng, Q.; Yin, X.-z.; Xiao, G.-q.; Liao, Z.-h.; Yang, M.; Zhang, J.-w. 2015: Quantitative structure characteristics and fractal dimension of Chinese medicine granules measured by synchrotron radiation X-ray computed micro tomography Yao Xue Xue Bao 50(6): 767-774
Zyłoszczyk, M.; Szaflarska-Stojko, E. 1989: Biological evaluation of the aggressiveness of dust formed during the manufacture of carbon electrodes in the carbon electrode plant Polish Journal of Occupational Medicine 2(1): 41-50
Takahashi, T.; Mitsuhashi, N.; Furuta, M.; Hasegawa, M.; Ohno, T.; Saito, Y.; Sakurai, H.; Nakano, T.; Niibe, H. 1998: Apoptosis induced by heavy ion (carbon) irradiation of two human tumours with different radiosensitivities in vivo: relative biological effectiveness (RBE) of carbon beam Anticancer Research 18(1a): 253-256
Komissarchik, I.I.; Filatov, S.E. 1973: Simplified device for preparing objects for electron microscopy by the method of freeze-etching Tsitologiia 15(12): 1539-1542
Yi, A.K.; Krieg, A.M. 1998: CpG DNA rescue from anti-IgM-induced WEHI-231 B lymphoma apoptosis via modulation of i kappa B alpha and i kappa B beta and sustained activation of nuclear factor-kappa B/c-Rel Journal of Immunology 160(3): 1240-1245
Vincent, M.; Rouvière, N.; Gallay, J. 2000: Wavelength-resolved fluorescence emission of proteins using the synchrotron radiation as pulsed-light source: cross-correlations between lifetimes, rotational correlation times and tryptophan heterogeneity in FKBP59 immunophilin Cellular and Molecular Biology 46(6): 1113-1131
Komarov, P.P.; Kotliarova, E.L.; Sergeev, S.N. 1990: A method for detecting trinitrotoluene in biological objects Sudebno-Meditsinskaia Ekspertiza 33(3): 26-27
Zinchenko, S.I.; Danilov, V.I. 1992: Sensitivity of biological objects to the effects of the geomagnetic field Biofizika 37(4): 636-642