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2. USU research helps agriculture enter the space age. Salisbury FB Utah Sci; 1987; 48(3):147-52. PubMed ID: 11540892 [TBL] [Abstract][Full Text] [Related]
3. Engineering plants for spaceflight environments. Bugbee B Gravit Space Biol Bull; 1999 May; 12(2):67-74. PubMed ID: 11541785 [TBL] [Abstract][Full Text] [Related]
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9. [Growth of wheat from seed-to-seed in space flight]. Levinskikh MA; Sychev VN; Derendiaeva TA; Signalova OB; Podol'skiĭ IG; Padalka GI; Avdeev SV; Bingham GE Aviakosm Ekolog Med; 2000; 34(4):44-9. PubMed ID: 11186585 [TBL] [Abstract][Full Text] [Related]
10. [Force of gravity in the processes of plant growth]. Merkis AI Probl Kosm Biol; 1990; 68():1-184. PubMed ID: 2132665 [No Abstract] [Full Text] [Related]
11. [Pre-flight ground studies for the Water Offset Nutrient Delivery Experiment (WONDER): a spaceflight payload comparing two nutrient delivery systems for plant growth in space]. Kasahara H; Levine L; Tynes GK; Levine HG Biol Sci Space; 2001 Oct; 15(3):232-3. PubMed ID: 11997618 [No Abstract] [Full Text] [Related]
12. Effect of microgravity on stress ethylene and carbon dioxide production in sweet clover (Melilotus alba L.). Gallegos GL; Odom WR; Guikema JA J Gravit Physiol; 1995; 2(1):P155-6. PubMed ID: 11538909 [No Abstract] [Full Text] [Related]
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14. Providing controlled environments for plant growth in space. Bula RJ; Ignatius RW Acta Hortic; 1996 Dec; 440():13-8. PubMed ID: 11541567 [TBL] [Abstract][Full Text] [Related]
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19. [Development of plant growth chambers for the experiments under microgravity conditions (4)-results of two experiments for water circulation in parabolic flight]. Tani A; Tahara N; Seino K; Kitaya Y; Saito T; Goto E; Takahashi H Biol Sci Space; 1999 Sep; 13(3):224-5. PubMed ID: 12533008 [No Abstract] [Full Text] [Related]
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