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Search: WFRF:(Rogal J)

  • Result 1-5 of 5
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1.
  • Ching, Yung-Hao, et al. (author)
  • High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5
  • 2010
  • In: BMC Genetics. - : Springer Science and Business Media LLC. - 1471-2156. ; 11, s. 106-
  • Journal article (peer-reviewed)abstract
    • Background: Forward genetic screens in mice provide an unbiased means to identify genes and other functional genetic elements in the genome. Previously, a large scale ENU mutagenesis screen was conducted to query the functional content of a similar to 50 Mb region of the mouse genome on proximal Chr 5. The majority of phenotypic mutants recovered were embryonic lethals. Results: We report the high resolution genetic mapping, complementation analyses, and positional cloning of mutations in the target region. The collection of identified alleles include several with known or presumed functions for which no mutant models have been reported (Tbc1d14, Nol14, Tyms, Cad, Fbxl5, Haus3), and mutations in genes we or others previously reported (Tapt1, Rest, Ugdh, Paxip1, Hmx1, Otoe, Nsun7). We also confirmed the causative nature of a homeotic mutation with a targeted allele, mapped a lethal mutation to a large gene desert, and localized a spermiogenesis mutation to a region in which no annotated genes have coding mutations. The mutation in Tbc1d14 provides the first implication of a critical developmental role for RAB-GAP-mediated protein transport in early embryogenesis. Conclusion: This collection of alleles contributes to the goal of assigning biological functions to all known genes, as well as identifying novel functional elements that would be missed by reverse genetic approaches.
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2.
  • Lundgren, Edvin, et al. (author)
  • Kinetic hindrance during the initial oxidation of Pd(100) at ambient pressures
  • 2004
  • In: Physical Review Letters. - 1079-7114. ; 92:4
  • Journal article (peer-reviewed)abstract
    • The oxidation of the Pd(100) surface at oxygen pressures in the 10(-6) to 10(3) mbar range and temperatures up to 1000 K has been studied in situ by surface x-ray diffraction (SXRD). The results provide direct structural information on the phases present in the surface region and on the kinetics of the oxide formation. Depending on the (T,p) environmental conditions, we observe either a thin (root5 x root5)R27degrees surface oxide or the growth of a rough, poorly ordered bulk oxide film of PdO predominantly with (001) orientation. By either comparison to the surface phase diagram from first-principles atomistic thermodynamics or by explicit time-resolved measurements we identify a strong kinetic hindrance to the bulk oxide formation even at temperatures as high as 675 K.
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3.
  • Rogal, J, et al. (author)
  • Developer's Guide to an Organ-on-Chip Model
  • 2022
  • In: ACS biomaterials science & engineering. - : American Chemical Society (ACS). - 2373-9878. ; 8:11, s. 4643-4647
  • Journal article (peer-reviewed)
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4.
  • Todorova, M, et al. (author)
  • The Pd(100)-(root 5 x root 5)R27 degrees-O surface oxide revisited
  • 2003
  • In: Surface Science. - 0039-6028. ; 541:1-3, s. 101-112
  • Journal article (peer-reviewed)abstract
    • Combining high-resolution core-level spectroscopy, scanning tunneling microscopy and density-functional theory calculations we reanalyze the Pd(100)-(root5 x root5)R27degrees-O surface oxide phase. We find that the prevalent structural model, a rumpled PdO(001) film suggested by previous low energy electron diffraction (LEED) work [Surf. Sci. 494 (2001) L799], is incompatible with all three employed methods. Instead, we suggest the two-dimensional film to consist of a strained PdO(101) layer on top of Pd(100). LEED intensity calculations show that this model is compatible with the experimental data of Saidy et al. (C) 2003 Elsevier B.V. All rights reserved.
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