Changes for page Amadee-24-AVAWT
Last modified by Hermann Hinterhauser on 2024/03/25 12:05
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edited by Hermann Hinterhauser
on 2024/03/18 19:06
on 2024/03/18 19:06
edited by Hermann Hinterhauser
on 2024/03/25 11:58
on 2024/03/25 11:58
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... ... @@ -1,1 +1,1 @@ 1 -Amadee-24- Staying Alive1 +Amadee-24-Genes4Mars - Content
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... ... @@ -1,10 +1,12 @@ 1 1 === Details === 2 2 3 -|**Acronym**|Staying Alive -Life support tasks under autonomous operationand under Earth-Mars joint operation 4 -|**Description**|A photobioreactor as the air revitalization component of the Hab life support system, equipped with a situationally aware and interactive sensor network. The study also assesses the psychological impact, reactor control from Earth and crew interfacing. 5 -|**Principal Investigator (PI)**|Christiane Heinicke ~| [[christiane.heinicke@zarm.uni-bremen.de>>mailto:christiane.heinicke@zarm.uni-bremen.de]] 6 -|**Organisation** |ZARM -Center of Applied Space Technology and Microgravity, University of Bremen 7 -|**Co-Investigators**|Vera Hagemann, Faculty of Business Studies and Economics, University of Bremen ~| [[vhagemann@uni-bremen.de>>mailto:vhagemann@uni-bremen.de]] 3 +|**Acronym**|Genes4Mars 4 +|**Description**|Astronaut performance and health monitoring with automated ECG andinvestigation of the changes in health-risk-associated gene expression patterns in blood and urine samples of astronauts. 5 +|**Principal Investigator (PI)**|Dr. Arsen Arakelyan ~| [[arsen.arakelyan@rau.am>>mailto:arsen.arakelyan@rau.am]] 6 +|**Organisation** |Institute of Biomedicine and Pharmacy, Russian-Armenian University; Institute of Molecular Biology NAS RA 7 +|**Co-Investigators**|((( 8 +Karen Avetisyan | [[avetisyan2016@gmail.com>>mailto:avetisyan2016@gmail.com]] 9 +))) 8 8 9 9 === Summary === 10 10 ... ... @@ -13,8 +13,14 @@ 13 13 [[image:ACT_manifest.png||height="266" width="399"]] 14 14 ))) 15 15 16 - Astronautsexperiencepsychologicalchallengesduring a planetarymissioncausedbyisolationfrom otherhumanbeings.Moreover,astronautsaredependent on the Life Support System(LSS) towithstand therough, Martianenvironmental conditions. A proper,humancentered LSS, whichiscontrolleddunderstood easilybytheastronautisessential for a successfulMars mission.Staying Alivedealswith the revitalizingcomponentof theLSS inahabitatform of a photobioreactor (PBR). PBRs have already beenresearched in theast, however, onlyascientific basis. StayingAlivecomprisesthree aspects of the PBR:•Communicationand operation•Theuserinterface •Contribution to the crew’smentalhealthTheaim ofStaying Aliveis toinvestigatetheinteraction betweentheastronautand thePBR. Additionally,ahighly interactive sensorsystemwill be tested. Thesensornetworkshallbe able tocommunicatewithhumansto learnfrom experienceand new data, to explainits decisionsandthus becomeateam memberratherthanadatasource.For themissionexperiment,a small and simplifiedPBR willbe usedin theAMADEE-24 habitat. It usesnon-toxicphotosyntheticorganismsto produce oxygen fromambient air and willbe equippedwith sensorand a userinterfacefor interaction. During theexperiment the crew mustperformseveraltasksoncefully autonomously and oncejointlywith the MissionSupport Center (MSC). The tasks tobe performedincludeset-up, maintenance, repair, andscience activities. Pre-and post-missionquestionnaires as wellasvideoecording will be usedto obtaindata.18 +Long-term space missions are known to be associated with health risks to astronauts because of environmental factors, such as radiation, microgravity, and lasting isolation. These risks could be more aggravating during spaceexplorationmissions, e.g.to Mars, especially with limited access to healthcare facilities. It is suspected that space flights and planetary missions could have performance degradation and negative effects on the cardiovascular health of the crew.Therefore, the development of biomarker-based and physiological predictors of health risks for the assessment of physiological conditions is of vital importance. 17 17 20 +The main objective of Genes4Mars is a retrospective investigation of changes inrisk-associated gene expression patterns in blood and urine samples from the Analog Astronauts. It will also investigate how well automated electrocardiogram (ECG)analysis can be used to monitor astronaut performanceduring planetary missions, and whether ECG can be used as a surrogate marker for dynamic changes in cardiacfunction-related genes. The members of the flight crew could be considered as a case group and the back-up flight crew members could function as a control group. The samples will be collected from each participant at multiple time points pre-, during and past-mission and will be analysed after the mission is completed. RNA will be extracted from the samples immediately upon their transfer to the lab and analysed for up-or downregulated genes. Additionally, 12-lead and single-lead ECGs of each participant should be taken one week prior to the start of the mission and each day before and after field assignments outside the habitat. After the end of the mission, the data will be analysed using deep learning methods and pre-trained models to detect heart pathologies. Correlation and regression analysis will be used to find the association between gene expression and physiological parameters. 21 + 22 + 23 + 24 + 25 + 18 18 === Experiment Data === 19 19 20 20 (% style="height:10px; width:1000px" %)