1172 Guillaume Wille et al.
CHOI, O., YU, C.-P., FERNANDEZ, G.E.&HU, Z. (2010). Interactions of nanosilver with Escherichia coli cells in planktonic and biofilm cultures. Water Res 44, 6095–6103.
DOBBERSTEIN, H., DUAN, H., SKEPPER, J.N. & HAYLES, M. (2006). Development of Cryo-STEM for scanning electron microscopy. Microsc Microanal 12(Suppl 2), 1116–1117.
DROUIN, D., COUTURE, A.R., JOLY, D., TASTET, X., AIMEZ,V.& GAUVIN, R. (2007). CASINO V2.42 – A fast and easy-to-use modeling tool for scanning electron microscopy and microanalysis users. Scanning 29,92–101.
EGERTON-WARBURTON, L.M. & GRIFFIN, B.J. (1994). Levels of mineral nutrients in fresh- and frozen bulk hydrated biological specimens: A comparison of EDS data collected in the environmental SEM and a conventional Cryo-SEM. Micron 25(6), 607–612.
FABREGA, J., RENSHAW,J. & LEAD, R.R. (2009). Interaction of silver nanoparticles with Pseudomonas putida biofilms. Environ Sci Technol 43, 9044–9009.
FABREGA, J., ZHANG, R., RENSHAW, J., LIU, W.T. & LEAD, J.R. (2011). Impact of silver nanoparticles on natural marine biofilm bacteria. Chemosphere 85, 961–966.
FERRONI, M., SIGNORONI, A., SANZOGNI, A., MASINI, L., MIGLIORI, A., ORTOLANI, L., PEZZA,A.&MORANDI, V. (2016). Biological application of compressed sensing tomography in the scanning electron microscope. Nat Sci Rep 6–33354,1–12.
FU, F., DIONYSIOU, D.D.&LIU,H. (2014). The use of zero-valent iron for groundwater remediation and wastewater treatment: A review. J Hazard Mat 267, 194–205.
GARCÍA-NEGRETE, C.A., JIMÉNEZ DEHARO, M.C., BLASCO, J., SOTO,M.& FERNÁNDEZ,A. (2015). STEM-in-SEM high resolution imaging of gold nanoparticles and bivalve tissues in bioaccumulation experiments. Analyst 140, 3082–3089.
GOLLA-SCHINDLER,U. (2004). STEM-Unitmeasurements in a scanning electron microscope. In Proceedings of the 13th European Microscopy Congress,Vol. I, pp. 409–410, 22–27 August 2004, Antwerpen, Belgium.
GUISE,O., STROM,C.&PRESCHILLA,N. (2011). STEM-in-SEMmethod for morphology analysis of polymer systems. Polymer 52,1278–1285.
HABIMANA, O., STEENKESTE, K., FONTAINE-AUPART, M.-P., BELLON- FONTAINE, M.-N., KULAKAUSKAS,S. & BRANDET, R. (2011). Diffusion of nanoparticles in biofilms is altered by bacterial cell wall hydrophobicity. Appl Environ Microbiol 77, 367–368.
HELLAL, J., JOLLY, L.,MICHEL, C.,MOUVET, C.,WILLE,G. &OLLIVIER,P. (2015). Interaction entre biofilms bactériens et nanoparticules de fer réactives dans le cadre de procédés de nanoremediation. In 7th National Biofilms network (RNB) symposium,2–3 December 2015, Toulouse, France.
JACKA, M., ZADRAZIL,M. & LOPOUR, F. (2003). A differentially pumped secondary electron detector for low-vacuum scanning electron microscopy. Scanning 25, 243–246.
KÄMPER, M., VETTERKING, S., BERKER,R. & HOPPERT, M. (2004). Methods for in situ detection and characterization of extracellular polymers in biofilms by electron microscopy. J Microbiol Methods 57,55–64.
KARCZ,J., BERNAS,T., NOWAK,A., TALIK,E. & WOZNICA, A. (2012). Application of lyophilization to prepare the nitrifying bacterial biofilm for imaging with scanning electron microscopy. Scanning 34,26–36.
KOCUR, C.M.D., LOMHEIM,L.,MOLENDA,O.,WEBER,K.P.,AUSTRINS,L.M., SLEEP,B.E., BOPARAI,H.K., EDWARDS,E.A.&O’CARROL,D.M. (2016). Long-term field study of microbial community and dechlorinating activity following carboxymethyl cellulose-stabilized nanoscale zero-valent iron injection. Environ Sci Technol 50(14), 7658–7670.
LANE, W.C. (1970). The environmental control stage. In Scanning Electron Microscopy, O. Johari (Ed.), pp. 41. Chicago, IL: IITRI.
LAWRENCE,J., SWERHONE,G., LEPPARD,G., ARAKI,T., ZHANG,X.,WEST,M. &HITCHCOXK, A. (2003). Scanning transmission X-ray, laser scanning, and transmission electron microscopy mapping of the exopolymeric matrix of microbial biofilms. Appl EnvironMicrobiol 69, 5543–5554.
LITTLE, B., WAGNER, P., RAY, R., POPE,R. & SCHEETZ, R. (1991). Biofilms: an ESEM evaluation of artifacts introduced during SEM preparation. J Ind Microbiol 8, 213–222.
MALLERVE, F., FERNANDES, T.F. & ASPRAY, T.J. (2016). Pseudomonas putida biofilm dynamics following a single pulse of silver nanoparticles. Chemosphere 153, 356–364.
MICHEL,C.,GARRIDO,F., ROCHE,E.,CHALLAN BELVAL,S.&DICTOR,M.-C. (2011).Role of exopolymeric substances (EPS) in the stability of the biofilm of Thiomonas arsenivorans grownonaporous mineral support. JMicrobiol Biotechnol 21,183–186.
MICHEL, C., WILLE,G., JOLLY,L., RICHARD,A., BUREL,A., OLLIVIER,P., MOUVET,C.&HELLAL,J.(2016).Analysisofbiofilm-nanoparticles interaction using microscopy (fluorescence, MEB, STEM, MET, EDS). In BIOFILMS 7, June 2016, Porto, Portugal.
MOOR,H, BELLIN,G, SANDRI,C&AKERT, K. (1980). The influence of high pressure freezing on mammalian nerve tissue. Cell Tissue Res 209(2), 201–216.
MOREAU, J.W.,WEBER,P.K.,MARTIN,M.C.,GILBERT,B.,HUTCHEON,I.D. &BANFIELD, J.F. (2007). Extracellular proteins limit the dispersal of biogenic nanoparticles. Science 316, 1600–1603.
PEULEN, T.-O.&WILKINSON, J. (2011). Diffusion of nanoparticles in a biofilm. Environ Sci Technol 45, 3367–3373.
PRIESTER, J., HORST, A., VAN DEWERFHORST, L., SALETA, J.,MERTES,L. &HOLDEN, P. (2007). Enhanced visualization of microbial biofilms by staining and environmental scanning electron microscopy. J Microbiol Methods 68, 577–587.
RICHARD, S.R. & TURNER, R.J. (1984). A comparative study of techniques for the examination of biofilms by scanning electron microscopy. Water Res 18(6), 767–773.
ROBINS, A.C. (2015). Ongoing developments of the Cryo-SEM/ STEM technique. Microsc Microanal 21(Suppl 3), 47–48.
STEFANIUK, M., OLESZCZUK,P. & OK, Y.S. (2016). Review on nano zerovalent iron (nZVI): From synthesis to environmental applications. Chem Engineer J 287, 618–632.
STEWART, P. (2003). Diffusion in biofilms. JBacteriol 185, 1485–1491. STOKES,D.(2008).ABrief Historical Overview, in Principles and Practice of Variable Pressure/Environmental Scanning Electron Microscopy (VP-ESEM). M. Rainforth (Ed.), pp. 17–62. Chichester, UK: John Wiley & Sons, Ltd.
SURMAN, S., WALKER, J., GODDARD, D., MORTON, L., KEEVIL, C., WEAVER, W., SKINNER, A., HANSON, K., CADWELL,D.&KURZ,J. (1996). Comparison of microscope techniques for the examination of biofilms. J Microbiol Method 25,57–70.
TRACY,B. & ALBERI, K. (2004). Adopting low-voltage STEM and automated sample prep to perform IC failure analysis. Micromagazine 2004/07,87–93.
WREDE, C.,HELLER, C., REITNER,J.&HOPPERT,M. (2008). Correlative light/electron microscopy for the investigation of microbial mats from black sea cold seeps. J Microbiol Methods 73,85–91.
ZHANG, W. (2003). Nanoscale iron particles for environmental remediation: An overview. J Nanopart Res 5, 323–332.
ZHANG, R., NEU, T., ZHANG, Y., BELLENBERG, S., KUHLICKE, U., LI, Q., SAND,W. & VERA, M. (2015). Visualization and analysis of EPS glycoconjugates of the thermoacidophilic archaeon Sulfolobus metallicus. Appl Microbiol Biotechnol 99, 7343–7356.
Page 1 |
Page 2 |
Page 3 |
Page 4 |
Page 5 |
Page 6 |
Page 7 |
Page 8 |
Page 9 |
Page 10 |
Page 11 |
Page 12 |
Page 13 |
Page 14 |
Page 15 |
Page 16 |
Page 17 |
Page 18 |
Page 19 |
Page 20 |
Page 21 |
Page 22 |
Page 23 |
Page 24 |
Page 25 |
Page 26 |
Page 27 |
Page 28 |
Page 29 |
Page 30 |
Page 31 |
Page 32 |
Page 33 |
Page 34 |
Page 35 |
Page 36 |
Page 37 |
Page 38 |
Page 39 |
Page 40 |
Page 41 |
Page 42 |
Page 43 |
Page 44 |
Page 45 |
Page 46 |
Page 47 |
Page 48 |
Page 49 |
Page 50 |
Page 51 |
Page 52 |
Page 53 |
Page 54 |
Page 55 |
Page 56 |
Page 57 |
Page 58 |
Page 59 |
Page 60 |
Page 61 |
Page 62 |
Page 63 |
Page 64 |
Page 65 |
Page 66 |
Page 67 |
Page 68 |
Page 69 |
Page 70 |
Page 71 |
Page 72 |
Page 73 |
Page 74 |
Page 75 |
Page 76 |
Page 77 |
Page 78 |
Page 79 |
Page 80 |
Page 81 |
Page 82 |
Page 83 |
Page 84 |
Page 85 |
Page 86 |
Page 87 |
Page 88 |
Page 89 |
Page 90 |
Page 91 |
Page 92 |
Page 93 |
Page 94 |
Page 95 |
Page 96 |
Page 97 |
Page 98 |
Page 99 |
Page 100 |
Page 101 |
Page 102 |
Page 103 |
Page 104 |
Page 105 |
Page 106 |
Page 107 |
Page 108 |
Page 109 |
Page 110 |
Page 111 |
Page 112 |
Page 113 |
Page 114 |
Page 115 |
Page 116 |
Page 117 |
Page 118 |
Page 119 |
Page 120 |
Page 121 |
Page 122 |
Page 123 |
Page 124 |
Page 125 |
Page 126 |
Page 127 |
Page 128 |
Page 129 |
Page 130 |
Page 131 |
Page 132 |
Page 133 |
Page 134 |
Page 135 |
Page 136 |
Page 137 |
Page 138 |
Page 139 |
Page 140 |
Page 141 |
Page 142 |
Page 143 |
Page 144 |
Page 145 |
Page 146 |
Page 147 |
Page 148 |
Page 149 |
Page 150 |
Page 151 |
Page 152 |
Page 153 |
Page 154 |
Page 155 |
Page 156 |
Page 157 |
Page 158 |
Page 159 |
Page 160 |
Page 161 |
Page 162 |
Page 163 |
Page 164 |
Page 165 |
Page 166 |
Page 167 |
Page 168 |
Page 169 |
Page 170 |
Page 171 |
Page 172 |
Page 173 |
Page 174 |
Page 175 |
Page 176 |
Page 177 |
Page 178 |
Page 179 |
Page 180