The Mir Space Station provided an outstanding opportunity to study long-term plant responses when exposed to a microgravity environment. Furthermore, if plants can be grown to maturity in a microgravity environment, they might be used in future bioregenerative life-support systems (BLSS). The primary objective of the Greenhouse experiment onboard Mir was to grow Super Dwarf and Apogee wheat through complete life cycles in microgravity; i.e., from seed-to-seed-to-seed. Additional objectives were to study chemical, biochemical, and structural changes in plant tissues as well as photosynthesis, respiration, and transpiration (evaporation of water from plants). Another major objective was to evaluate the suitability clothe facilities on Mir for...
The effects of a microgravity environment on the entire life cycle of plants is not yet fully unders...
In the preparation for missions to Mars, basic knowledge of the mechanisms of growth and development...
The use of plants for bioregenerative life support for space missions was first studied by the US Ai...
We carried out three experiments with Super Dwarf wheat in the Bulgarian/Russian growth chamber Svet...
Plants will be a critical component of future Bioregenerative Life Support Systems that will be impl...
Due to logistical challenges, long-term human space exploration missions require a life support syst...
The sustainability of long duration manned missions in space relies on plant-based Bioregenerative L...
International audienceAdvancements in plant Space biology are required for the realization of long-d...
The cultivation of higher plants occupies an essential role within bio-regenerative life support sys...
The ASTROCULTURE(trademark) plant growth unit flown as part on the STS-63 mission in February 1995, ...
The movement of water in, across and out of the plant is a key factor when growing plants as part of...
Sustained human presence in space requires the development of new technologies to maintain environm...
The International Space Station (ISS) now has platforms for conducting research on horticultural pla...
14 p.-4 fig.The coming enterprises of space exploration by humans, e.g. the future colonization of t...
Abstract Advancements in plant space biology are required for the realization of human space explora...
The effects of a microgravity environment on the entire life cycle of plants is not yet fully unders...
In the preparation for missions to Mars, basic knowledge of the mechanisms of growth and development...
The use of plants for bioregenerative life support for space missions was first studied by the US Ai...
We carried out three experiments with Super Dwarf wheat in the Bulgarian/Russian growth chamber Svet...
Plants will be a critical component of future Bioregenerative Life Support Systems that will be impl...
Due to logistical challenges, long-term human space exploration missions require a life support syst...
The sustainability of long duration manned missions in space relies on plant-based Bioregenerative L...
International audienceAdvancements in plant Space biology are required for the realization of long-d...
The cultivation of higher plants occupies an essential role within bio-regenerative life support sys...
The ASTROCULTURE(trademark) plant growth unit flown as part on the STS-63 mission in February 1995, ...
The movement of water in, across and out of the plant is a key factor when growing plants as part of...
Sustained human presence in space requires the development of new technologies to maintain environm...
The International Space Station (ISS) now has platforms for conducting research on horticultural pla...
14 p.-4 fig.The coming enterprises of space exploration by humans, e.g. the future colonization of t...
Abstract Advancements in plant space biology are required for the realization of human space explora...
The effects of a microgravity environment on the entire life cycle of plants is not yet fully unders...
In the preparation for missions to Mars, basic knowledge of the mechanisms of growth and development...
The use of plants for bioregenerative life support for space missions was first studied by the US Ai...