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Hoffmann, R. A wiki for the life sciences where authorship matters. Nature Genetics (2008)
 

Norbert Weissmann

University of Giessen Lung Center (UGLC)

Medical Clinic II/V

Justus-Liebig University Giessen

Klinikstrasse 36

Germany

[email]@*.med.uni-giessen.de

Name/email consistency: high

 
 
 
 
 
 
 

Affiliations

  • University of Giessen Lung Center (UGLC), Medical Clinic II/V, Justus-Liebig University Giessen, Klinikstrasse 36, Germany. 2006 - 2007
  • Department of Internal Medicine, Justus-Liebig-University Giessen, Giessen, Germany. 2000 - 2005

References

  1. Hypoxia-induced pulmonary hypertension: different impact of iloprost, sildenafil, and nitric oxide. Weissmann, N., Gerigk, B., Kocer, O., Nollen, M., Hackemack, S., Ghofrani, H.A., Schermuly, R.T., Butrous, G., Schulz, A., Roth, M., Seeger, W., Grimminger, F. Respir. Med (2007) [Pubmed]
  2. Classical transient receptor potential channel 6 (TRPC6) is essential for hypoxic pulmonary vasoconstriction and alveolar gas exchange. Weissmann, N., Dietrich, A., Fuchs, B., Kalwa, H., Ay, M., Dumitrascu, R., Olschewski, A., Storch, U., Mederos y Schnitzler, M., Ghofrani, H.A., Schermuly, R.T., Pinkenburg, O., Seeger, W., Grimminger, F., Gudermann, T. Proc. Natl. Acad. Sci. U.S.A. (2006) [Pubmed]
  3. Detection of reactive oxygen species in isolated, perfused lungs by electron spin resonance spectroscopy. Weissmann, N., Kuzkaya, N., Fuchs, B., Tiyerili, V., Schäfer, R.U., Schütte, H., Ghofrani, H.A., Schermuly, R.T., Schudt, C., Sydykov, A., Egemnazarow, B., Seeger, W., Grimminger, F. Respir. Res. (2005) [Pubmed]
  4. Congenital erythropoietin over-expression causes "anti-pulmonary hypertensive" structural and functional changes in mice, both in normoxia and hypoxia. Weissmann, N., Manz, D., Buchspies, D., Keller, S., Mehling, T., Voswinckel, R., Quanz, K., Ghofrani, H.A., Schermuly, R.T., Fink, L., Seeger, W., Gassmann, M., Grimminger, F. Thromb. Haemost. (2005) [Pubmed]
  5. Basic features of hypoxic pulmonary vasoconstriction in mice. Weissmann, N., Akkayagil, E., Quanz, K., Schermuly, R.T., Ghofrani, H.A., Fink, L., Hänze, J., Rose, F., Seeger, W., Grimminger, F. Respir. Physiol. Neurobiol (2004) [Pubmed]
  6. Measurement of exhaled hydrogen peroxide from rabbit lungs. Weissmann, N., Vogels, H., Schermuly, R.T., Ghofrani, H.A., Hänze, J., Fink, L., Rose, F., Seeger, W., Grimminger, F. Biol. Chem. (2004) [Pubmed]
  7. Effects of mitochondrial inhibitors and uncouplers on hypoxic vasoconstriction in rabbit lungs. Weissmann, N., Ebert, N., Ahrens, M., Ghofrani, H.A., Schermuly, R.T., Hänze, J., Fink, L., Rose, F., Conzen, J., Seeger, W., Grimminger, F. Am. J. Respir. Cell Mol. Biol. (2003) [Pubmed]
  8. NO and reactive oxygen species are involved in biphasic hypoxic vasoconstriction of isolated rabbit lungs. Weissmann, N., Winterhalder, S., Nollen, M., Voswinckel, R., Quanz, K., Ghofrani, H.A., Schermuly, R.T., Seeger, W., Grimminger, F. Am. J. Physiol. Lung Cell Mol. Physiol. (2001) [Pubmed]
  9. Nitric oxide (NO)-dependent but not NO-independent guanylate cyclase activation attenuates hypoxic vasoconstriction in rabbit lungs. Weissmann, N., Voswinckel, R., Tadic, A., Hardebusch, T., Ghofrani, H.A., Schermuly, R.T., Seeger, W., Grimminger, F. Am. J. Respir. Cell Mol. Biol. (2000) [Pubmed]
  10. Hypoxic vasoconstriction in intact lungs: a role for NADPH oxidase-derived H(2)O(2)?. Weissmann, N., Tadic, A., Hänze, J., Rose, F., Winterhalder, S., Nollen, M., Schermuly, R.T., Ghofrani, H.A., Seeger, W., Grimminger, F. Am. J. Physiol. Lung Cell Mol. Physiol. (2000) [Pubmed]
 
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