NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Press Enter or click the Search button to begin your search.

Back to Results
Quantifying Medical Risk on a Long Duration Lunar Mission: A Demonstration of NASA’s IMPACT Tradespace Analysis ToolBackground
NASA’s human exploration spaceflight missions to the Moon and Mars present unprecedented challenges for in-mission medical care. The distance from Earth will mean increased mission durations, communication delays, limited to no resupply opportunities, and constraints on the medical evacuation of astronauts. Mass, volume, power, and data will be limited while higher demands will be placed on the crew to manage medical care. NASA’s Moon to Mars exploration strategy lays out increasingly complex Artemis missions both in terms of duration and operations. In these more challenging deep space missions, it is important to quantitatively estimate the human medical risk to inform a traditional heuristic approach to medical risk. Prior tools have been developed for missions in low Earth orbit, but a new tool is required to plan for future exploration missions.

Methods
IMPACT (Informing Mission Planning via Analysis of Complex Tradespaces) is a risk assessment tool developed by NASA to advance exploration mission medical system design by quantitatively estimating mission medical risk. IMPACT v1.0 includes a novel evidence library baselined to exploration environments; an expanded list of 119 medical conditions; the addition of medical resources; and the ability for rapid and iterative analysis. Medical system risk estimates include loss of crew life, consideration of the need for return to definitive care (medical evacuation), and an estimate of crew time affected due to medical conditions. A notional long duration lunar orbit and lunar surface design reference mission (DRM) was chosen with a 4-astronaut crew to represent a sustained exploration Artemis mission.

Results/Discussion
Overall, IMPACT successfully quantified medical risk and derived an optimized medical system to support crew on a long duration lunar mission. In this DRM, the calculated loss of crew life from a medical event was 0.008 events per mission, risk of potential need for evacuation was 0.30 events per mission, and cumulative crew time affected by medical conditions was 103 days. The medical conditions that most contributed to overall medical risk were decompression sickness, trauma conditions, and respiratory failure. The conditions that had the largest effects on crew performance included musculoskeletal injuries and lunar dust exposure. The IMPACT-generated medical system included resources that target the most common and highest risk conditions. This systematic analysis demonstrates the value of the IMPACT tool in medical system design for human exploration spaceflight missions.
Document ID
20240012226
Acquisition Source
Johnson Space Center
Document Type
Presentation
Authors
Arian Anderson ORCID
(University of Colorado Anschutz Medical Campus Aurora, United States)
James Fenbert
(Analytical Mechanics Associates (United States) Hampton, Virginia, United States)
Benjamin Easter ORCID
(University of Colorado Anschutz Medical Campus Aurora, United States)
Kris Lehnhardt ORCID
(Baylor College of Medicine Houston, United States)
Date Acquired
September 23, 2024
Publication Date
October 14, 2024
Publication Information
Publisher: International Astronautical Federation (IAF)
Subject Category
Systems Analysis and Operations Research
Meeting Information
Meeting: 75th International Astronautical Congress (IAC)
Location: Milan
Country: IT
Start Date: October 14, 2024
End Date: October 18, 2024
Sponsors: International Astronautical Federation (IAF)
Funding Number(s)
CONTRACT_GRANT: NNJ15HK11B
CONTRACT_GRANT: 80LARC23DA003
CONTRACT_GRANT: KCA-4523
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
Professional Review
Keywords
Missions to Mars
Mission Medical Risk
Risk Modeling
Medical System Design
Probabilistic Risk Assessment
No Preview Available