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Lebert M, Porst M, Häder D-P (1995) Long-term culture of Euglena gracilis: an AQUARACK
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Li X, Anken RH, Wang G, Hilbig R, Liu Y (2011) Effects of wall vessel rotation on the growth of
larval zebrafish inner ear otoliths. Microgravity Sci Technol 23:13–18
Li X, Anken R, Liu L, Wang G, Liu Y (2017a) Effects of simulated microgravity on otolith growth
of larval zebrafish using a rotating-wall vessel: appropriate rotation speed and fish developmental stage. Microgravity Sci Technol 29:1–8
Li X, Richter PR, Hao Z, An Y, Wang G, Li D, Liu Y, Strauch SM, Schuster M, Haag FW (2017b)
Operation of an enclosed aquatic ecosystem in the Shenzhou-8 mission. Acta Astronaut
134:17–22
Montoye HJ, Washburn R, Servais S, Ertl A, Webster JG, Nagle FJ (1983) Estimation of energy
expenditure by a portable accelerometer. Med Sci Sports Exerc 15:403–407
Moores JE, Lemmon MT, Rafkin SC, Francis R, Pla-Garcia J, de la Torre Juárez M, Bean K,
Kass D, Haberle R, Newman C (2015) Atmospheric movies acquired at the Mars science
laboratory landing site: cloud morphology, frequency and significance to the gale crater water
cycle and phoenix mission results. Adv Space Res 55:2217–2238
Nasir A, Strauch S, Becker I, Sperling A, Schuster M, Richter P, Weißkopf M, Ntefidou M,
Daiker V, An Y (2014) The influence of microgravity on Euglena gracilis as studied on
Shenzhou 8. Plant Biol 16:113–119
Porst M, Lebert M, Häder D-P (1996) Long-term culture of Euglena gracilis: an Aquarack progress
report. In: Proceedings of the 11th C.E.B.A.S. Workshops. Ruhr-University, Bochum, pp
217–223
Porst M, Lebert M, Häder D-P (1997) Long-term cultivation of the flagellate Euglena gracilis.
Microgravity Sci Technol 10:166–169
Sakano Y, Pickering KD, Strom PF, Kerkhof LJ (2002) Spatial distribution of total, ammoniaoxidizing, and denitrifying bacteria in biological wastewater treatment reactors for
bioregenerative life support. Appl Environ Microbiol 68:2285–2293
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Häder D-P, Kreuzberg K (1990) Algal bioreactor-concept and experiment design. Proceedings of
the workshop (DARA/CNES) on artificial ecological systems, 24–26 October 1990, Marseille
Häder D-P, Richter PR, Strauch SM, Schuster M (2006) Aquacells – flagellates under long-term
microgravity and potential usage for life support systems. Microgravity Sci Technol
18:210–214
Hauslage J, Strauch SM, Eßmann O, Haag FWM, Richter P, Krüger J, Julia Stoltze J, Becker I,
Adeel Nasir A, Bornemann G, Müller H, Delovski T, Berger T, Rutczynska A, Lebert M (2018)
Eu:CROPIS – Euglena combined regenerative organic-food production in space. A compact
satellite mission testing biological life support systems under lunar and Martian gravity
Hilbig R, Anken R (2017) Impact of micro-and hypergravity on neurovestibular issues of fish. In:
Hilbig R, Gollhofer A, Bock O, Manzey D (eds) Sensory motor and behavioral research in
space. Springer, Heidelberg, pp 59–86
Knox JC, Gauto H, Miller LA (2015) Development of a test for evaluation of the hydrothermal
stability of sorbents used in closed-loop CO 2 removal systems. 45th international conference on
environmental systems, 12–16 July 2015. Bellevue, WA
Kolvenbach H (2014) Development of an atmosphere management system for bio-regenerative life
support systems. RWTH, Aachen
Lasseur C, Brunet J, De Weever H, Dixon M, Dussap G, Godia F, Leys N, Mergeay M, Van Der
Straeten D (2010) MELISSA: the European project of closed life support system. Gravit Space
Res 23:3–12
Lebert M, Häder D-P (1998) Aquarack: long-term growth facility for ‘professional’ gravisensing
cells. Proceedings of the 2nd European symposium on the utilisation of the international space
station, ESTEC, Noordwijk, The Netherlands. 16–18 November 1998 (ESA-SP 433)
Lebert M, Porst M, Häder D-P (1995) Long-term culture of Euglena gracilis: an AQUARACK
progress report. Proceedings of the 11th C.E.B.A.S. workshops. Annual issue 1995, RuhrUniversity of Bochum
Li X, Anken RH, Wang G, Hilbig R, Liu Y (2011) Effects of wall vessel rotation on the growth of
larval zebrafish inner ear otoliths. Microgravity Sci Technol 23:13–18
Li X, Anken R, Liu L, Wang G, Liu Y (2017a) Effects of simulated microgravity on otolith growth
of larval zebrafish using a rotating-wall vessel: appropriate rotation speed and fish developmental stage. Microgravity Sci Technol 29:1–8
Li X, Richter PR, Hao Z, An Y, Wang G, Li D, Liu Y, Strauch SM, Schuster M, Haag FW (2017b)
Operation of an enclosed aquatic ecosystem in the Shenzhou-8 mission. Acta Astronaut
134:17–22
Montoye HJ, Washburn R, Servais S, Ertl A, Webster JG, Nagle FJ (1983) Estimation of energy
expenditure by a portable accelerometer. Med Sci Sports Exerc 15:403–407
Moores JE, Lemmon MT, Rafkin SC, Francis R, Pla-Garcia J, de la Torre Juárez M, Bean K,
Kass D, Haberle R, Newman C (2015) Atmospheric movies acquired at the Mars science
laboratory landing site: cloud morphology, frequency and significance to the gale crater water
cycle and phoenix mission results. Adv Space Res 55:2217–2238
Nasir A, Strauch S, Becker I, Sperling A, Schuster M, Richter P, Weißkopf M, Ntefidou M,
Daiker V, An Y (2014) The influence of microgravity on Euglena gracilis as studied on
Shenzhou 8. Plant Biol 16:113–119
Porst M, Lebert M, Häder D-P (1996) Long-term culture of Euglena gracilis: an Aquarack progress
report. In: Proceedings of the 11th C.E.B.A.S. Workshops. Ruhr-University, Bochum, pp
217–223
Porst M, Lebert M, Häder D-P (1997) Long-term cultivation of the flagellate Euglena gracilis.
Microgravity Sci Technol 10:166–169
Sakano Y, Pickering KD, Strom PF, Kerkhof LJ (2002) Spatial distribution of total, ammoniaoxidizing, and denitrifying bacteria in biological wastewater treatment reactors for
bioregenerative life support. Appl Environ Microbiol 68:2285–2293
References
121
