Вход на сайт

Просмотр новости

Найдите то, что Вас интересует

NASA Sends Miniaturized IV Fluid Generator to ISS Ahead of Deep Space Missions

Дата публикации: 01-07-2026 05:42:03


Los Angeles CA (SPX) Apr 26, 2026
NASA has delivered a compact device to the International Space Station that can produce sterile medical-grade IV fluid on demand by filtering drinking water already aboard the station, addressing a critical gap in medical readiness for future deep space missions.
The system, called IntraVenous Fluid GENeration Miniaturized - IVGEN Mini - launched to the station on April 11 aboard the North

Основное содержимое страницы с новостью.

by Clarence Oxford
Los Angeles CA (SPX) Apr 26, 2026

NASA has delivered a compact device to the International Space Station that can produce sterile medical-grade IV fluid on demand by filtering drinking water already aboard the station, addressing a critical gap in medical readiness for future deep space missions.

The system, called IntraVenous Fluid GENeration Miniaturized - IVGEN Mini - launched to the station on April 11 aboard the Northrop Grumman Commercial Resupply Services 24 mission. Demonstration operations are planned to begin in May, when crew members will run the system over two days to generate 10 liters of IV fluid. Those samples will be returned to Earth for laboratory analysis to confirm the fluid meets medical-grade requirements.

IV fluid is a standard component of every crewed NASA mission because it can address up to 30 percent of the medical conditions likely to arise in flight, including dehydration, burns and other acute conditions. But prepackaged IV fluid has a shelf life of only 16 months, making it unsuitable as a standalone supply for deep space missions that could last up to three years. IVGEN Mini addresses that problem by manufacturing fluid as needed from the station's existing potable water supply.

The system works by connecting a large input bag of station drinking water to the IVGEN Mini unit, which filters out particulates and mineral ions. The processed water then flows into an output bag containing premeasured sodium chloride, producing a sterile saline solution that meets intravenous fluid standards. The current design generates 1.2 liters of fluid per hour.

Courtney Schkurko, engineering project manager at NASA Glenn Research Center, described the cargo efficiency case for the technology. On a mission to Mars, 100 liters of prepackaged IV fluid would occupy substantial cargo volume and carry expiration risk throughout the voyage. IVGEN Mini occupies a fraction of that space and produces fluid continuously within expiration, eliminating the logistical burden of stocking a perishable supply for an extended mission.

IVGEN Mini is a second-generation development. The original IVGEN system was demonstrated aboard the space station in 2010 but included additional sensing equipment that made it significantly larger. The miniaturized successor removes the gaseous nitrogen pumping mechanism used in the earlier design, replacing it with compact electric pumps that reduce both size and mass while refining the filtration process.

The system was developed at NASA Glenn with contributions from Sierra Lobo, Inc., and NASA's Johnson Space Center. Requirements were set based on the expected range of medical events during a deep space mission, the fluid volumes needed to treat them, and the flow rate required for clinical use. The fluid produced must meet United States Pharmacopeia standards for pH, salinity, sterility and particulate content. None of the fluid generated during the ISS demonstration will be administered to crew.

IVGEN Mini is managed by NASA's Mars Campaign Office as part of the agency's broader program of technology development for human exploration of the Moon and Mars. A second set of demonstration operations is planned for fall 2026, and shelf-life testing of the system's output is under development as the next phase of the program.

Related Links
NASA Glenn Research Center
Space Medicine Technology and Systems

white.jpg black.jpg white.jpg

RELATED CONTENT

white.jpg

The following news reports may link to other Space Media Network websites.
black.jpg white.jpg

esa-astronaut-alexander-gerst-energy-experiment-how-people-consume-energy-in-space-medicine-lg.jpg SPACE MEDICINE
Astronaut Brain Grip Study Reveals How the Mind Adapts to Shifting Gravity Environments
Los Angeles CA (SPX) Apr 23, 2026
Astronauts take time to adjust how strongly they grip and move objects when transitioning between Earth and space, basing those adjustments on predictions their brains make about the risk of making mistakes, according to new research published in JNeurosci. On Earth, people grip objects to ensure they don't fall. In space, this process changes: when astronauts hold an object without moving it and then let go, the object doesn't fall because there is no gravity. But when astronauts move an object i ... read more

The content herein, unless otherwise known to be public domain, are Copyright 1995-2026 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. All articles labeled "by Staff Writers" include reports supplied to Space Media Network by industry news wires, PR agencies, corporate press officers and the like. Such articles are individually curated and edited by Space Media Network staff on the basis of the report's information value to our industry and professional readership. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. General Data Protection Regulation (GDPR) Statement Our advertisers use various cookies and the like to deliver the best ad banner available at one time. All network advertising suppliers have GDPR policies (Legitimate Interest) that conform with EU regulations for data collection. By using our websites you consent to cookie based advertising. If you do not agree with this then you must stop using the websites from May 25, 2018. Privacy Statement. Additional information can be found here at About Us.

Схожие новости

#Наименование новостиТональностьИнформативностьДата публикации
1Simulated weightlessness alters clotting patterns in women013.4801-07-2026
2UK roadmap aims to bring space made medicines to patients0901-07-2026
3Миссия SpaceX впервые успешно протестировала портативную рентген-систему вне Земли111.0526-07-2026
4Миссия SpaceX впервые успешно протестировала портативную рентген-систему вне Земли111.0526-07-2026
5Миссия SpaceX впервые успешно протестировала портативную рентген-систему вне Земли111.0526-07-2026
6👨‍🚀 NASA создала кружку из которой можно пить в невесомости ...05.8231-07-2026
7На орбите привычные вещи перестают работать так, как мы ожидаем. ...0727-06-2026
8🚀💡 Рентген в космосе: прорыв, который спасёт жизни астронавтов Представьте: ...7815-07-2026
9НАСА разработало кружку, чтобы астронавты могли пить кофе по-человечески. 🚀☕ ...5728-06-2026
10NASA разработало кружку, из которой можно пить в условиях невесомости ...06.1702-08-2026

Классификация: Космос. Схожих патентов: 0. Схожих новостей: 10. Тональность: 0. Информативность: 10.13. Источник: www.interndaily.com.