Thromb Haemost 2009; 101(05): 799
DOI: 10.1160/TH09-03-0183
Editorial Focus
Schattauer GmbH

Hypergravity and microgravity influence haemostasis

Rupert Gerzer
1   Institute of Aerospace Medicine, DLR, Köln, Germany
› Author Affiliations
Further Information

Publication History

Received: 20 March 2009

Accepted: 20 March 2009

Publication Date:
24 November 2017 (online)

 

 
  • References

  • 1 Dai K, Wang Y, Yan R. et al. Effects of microgravity and hypergravity on platelet functions. Thromb Haemost 2009; 101: 902-910.
  • 2 Hatton JP, Gaubert F, Cazenave JP. et al. Micro-gravità modifies protein kinase C isoform trans-location in the human monocytic cell line U937 and human peripheral blood T-cells. J Cell Biochem 2002; 87: 39-50.
  • 3 Monici M, Fusi F, Paglierini M. et al. Modeled gravitational unloading triggers differentiation and apoptosis in preosteoclastic cells. J Cell Niochem 2006; 98: 65-80.
  • 4 Plett PA, Abonour R, Frankovitz SM. et al. Impact of modeled microgravità on migration, differentiation, and cell cycle control of primitive human hematopoietic progenitor cells. Exp Hematol 2004; 32: 773-781.
  • 5 Schatten H, Lewis ML, Chakrabarti A. Spaceflight and clinorotation cause cytoskeleton and mitochondria changes and increases in apoptosis in cultured cells. Acta Astronaut 2001; 49: 399-418.
  • 6 Cogoli A, Tschopp A, Fuchs-Bislin P. Cell sensitività to gravity. Science 1994; 225: 228-230.
  • 7 Ullrich O, Huber K, Lang K. Signal transduction in cells of the immune system in microgravity. Cell Comm Signal 2008; 06: 9.