Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 21 checked references that resolve
resolves10.1096/fj.00-0837fjeEvidence for Ca
<sup>2+</sup>
‐ and ATP‐sensitive peripheral channels in nuclear pore complexes
resolves10.1007/BF00315084Effect of chronic centrifugation on the structural development of the musculoskeletal system of the rat
resolves10.1006/excr.1996.0313Gravitational Loading of a Simulated Launch Alters mRNA Expression in Osteoblasts
resolves10.1247/csf.23.221Stimulative Effect of High-level Hypergravity on Differentiated Functions of Osteoblast-like Cells.
resolves10.1006/excr.1994.1073Induction of Early Response Genes by Hypergravity in Cultured Mouse Osteoblastic Cells (MC3T3-E1)
resolves10.1006/excr.1997.3703Effects of Intermittent or Continuous Gravitational Stresses on Cell–Matrix Adhesion: Quantitative Analysis of Focal Contacts in Osteoblastic ROS 17/2.8 Cells
resolves10.1007/BF00318883Microgravity and hypergravity effects on collagen biosynthesis of human dermal fibroblasts
resolves10.2307/3628022Recognizing and Optimizing Flight Opportunities with Hardware and Life Sciences Limitations
The 9 references without a DOI — listed, not checked
no DOI — not checkedForkheim, K. E., Schenker, E. B.: Microgravity induced osteoporosis study on STS-80 space flight. Gravitational Space Biology Bulletin, vol. 12, p. 58 (1998).
no DOI — not checkedHughes-Fulford, M., Tjandrawinata, R., Fitzgerald, J., Gasuad, K., Gilbertson, V.: Effects of microgravity on osteoblast growth. Gravitational Space Biology Bulletin, vol. 11, p. 51 (1998).
no DOI — not checkedKaplansky, A. S., Durnova, G. N., Burkovskaya, T. E., Vorotnikova, E. V.: The effect of microgravity on bone fracture healing in rats flown on Cosmos-2044. Physiologist, vol. 34, p. S196 (1991).
no DOI — not checkedRoberts, W. E., Mozsary, P. G., Morey, E. R.: Suppression of osteoblast differentiation during weightlessness. Physiologist, vol. 24, p. S75 (1981).
no DOI — not checkedRoberts, W. E., Fielder, P. J., Rosenoer, L. M. L., Maese, A. C., Gonsalves, M. R., Morey, E. R.: Nuclear morphometric analysis of osteoblast precursor cells in periodontal ligament, SL-3 rats. American Journal of Physiology, vol. 252, p. R247 (1987).
no DOI — not checkedBromage, T. G., Smolyar, I., Doty, S. B., Holton, E.: Growth rate variability of lamellar bone in rats exposed to macrogravity (2G+). Gravitational Space Biology Bulletin, vol. 12, p. 34 (1998).
no DOI — not checkedMartinez, D. A., Orth, M. W., Carr, K. E., Vanderby, R. Jr., Vasques, M., Grindeland, R. E., Vailas, A. C.: Cortical bone responses to 2G hypergravity in growing rats. Aviation, Space, and Environmental Medicine, vol. 69, p. A17 (1998).
no DOI — not checkedCroute, F., Gaubin, Y., Pianezzi, B., Soleilhavoup, J. P.: Effects of hypergravity on the cell shape and on the organization of cytoskeleton and extra cellular matrix molecules of in vitro human dermal fibroblasts. Microgravity Science and Technology, vol. VIII, p. 118 (1995).
no DOI — not checkedKacena, M. A.: Osteoblast modulation by gravitational forces. Ph.D. Dissertation. University of Colorado, Boulder (1999).
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