Skaningowy mikroskop elektronowy (Polish Wikipedia)

Analysis of information sources in references of the Wikipedia article "Skaningowy mikroskop elektronowy" in Polish language version.

refsWebsite
Global rank Polish rank
2nd place
6th place
1st place
1st place
low place
6,164th place
2,302nd place
5,377th place
7,619th place
low place
9,449th place
234th place
low place
low place
120th place
180th place
1,266th place
1,455th place
low place
low place
4th place
7th place
low place
low place
low place
low place

acta-microscopica.org

doi.org

dx.doi.org

  • T.E. Everhart, R.F.M. Thornley, Wide-band detector for micro-microampere low-energy electron currents, „Journal of Scientific Instruments”, 37 (7), 1960, s. 246–248, DOI10.1088/0950-7671/37/7/307 [dostęp 2021-01-28] (ang.).
  • E. Suzuki, High-resolution scanning electron microscopy of immunogold-labelled cells by the use of thin plasma coating of osmium, „Journal of Microscopy”, 208 (3), 2002, s. 153–157, DOI10.1046/j.1365-2818.2002.01082.x [dostęp 2021-01-28] (ang.).
  • John A. Kiernan, Formaldehyde, Formalin, Paraformaldehyde And Glutaraldehyde: What They Are And What They Do, „Microscopy Today”, 8 (1), 2000, s. 8–13, DOI10.1017/S1551929500057060 [dostęp 2021-01-28] (ang.).
  • Scott D. Russell, Charles P. Daghlian, Scanning electron microscopic observations on deembedded biological tissue sections: Comparison of different fixatives and embedding materials, „Journal of Electron Microscopy Technique”, 2 (5), 1985, s. 489–495, DOI10.1002/jemt.1060020511 [dostęp 2021-01-28] (ang.).
  • G.D. Daniatos, Design and construction of an atmospheric or environmental SEM (part 1), „Scanning”, 4 (1), 1981, s. 9–20, DOI10.1002/sca.4950040102 [dostęp 2021-01-28] (ang.).
  • Scott P. Collins i inni, Advantages of environmental scanning electron microscopy in studies of microorganisms, „Microscopy Research and Technique”, 25 (5-6), 1993, s. 398–405, DOI10.1002/jemt.1070250508 [dostęp 2021-01-28] (ang.).
  • G.D. Danilatos, Design and construction of an atmospheric or environmental SEM (part 3), „Scanning”, 7 (1), 1985, s. 26–42, DOI10.1002/sca.4950070102 [dostęp 2021-01-28] (ang.).
  • Tinkara Kopar, Vilma Ducman, Low-vacuum SEM analyses of ceramic tiles with emphasis on glaze defects characterisation, „Materials Characterization”, 58 (11-12), 2007, s. 1133–1137, DOI10.1016/j.matchar.2007.04.022 [dostęp 2021-01-28] (ang.).
  • D.L. Chance, T.P. Mawhinney, Employing “Wet SEM” Imaging to Study Co-Colonizing Mucosal Pathogens, „Microscopy and Microanalysis”, 12 (S02), 2006, s. 308–309, DOI10.1017/S1431927606063367 [dostęp 2021-01-28] (ang.).
  • B.D. Myers, Z. Pan, V.P. Dravid, Beam skirting effects on energy deposition profile in VP-SEM, „Microscopy and Microanalysis”, 14 (S2), 2008, s. 1208–1209, DOI10.1017/S1431927608085589 [dostęp 2021-01-28] (ang.).
  • Leili Baghaei Rad i inni, Economic approximate models for backscattered electrons, „Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures”, 25 (6), 2007, s. 2425, DOI10.1116/1.2794068 [dostęp 2021-01-28] (ang.).
  • Josef Neumüller, Electron tomography—a tool for ultrastructural 3D visualization in cell biology and histology, „Wiener Medizinische Wochenschrift”, 168 (11-12), 2018, s. 322–329, DOI10.1007/s10354-018-0646-y, PMID30084092, PMCIDPMC6132546 [dostęp 2021-01-28] (ang.).

ehow.com

laboratoria.net

mddionline.com

nih.gov

ncbi.nlm.nih.gov

  • Josef Neumüller, Electron tomography—a tool for ultrastructural 3D visualization in cell biology and histology, „Wiener Medizinische Wochenschrift”, 168 (11-12), 2018, s. 322–329, DOI10.1007/s10354-018-0646-y, PMID30084092, PMCIDPMC6132546 [dostęp 2021-01-28] (ang.).

northwestern.edu

xrm.phys.northwestern.edu

oxford-instruments.com

republika.pl

technologialaserowa.republika.pl

researchgate.net

umn.edu

charfac.umn.edu

uvic.ca

stehm.uvic.ca

web.archive.org