惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

J
Java Code Geeks
奇客Solidot–传递最新科技情报
奇客Solidot–传递最新科技情报
有赞技术团队
有赞技术团队
博客园 - 【当耐特】
云风的 BLOG
云风的 BLOG
Martin Fowler
Martin Fowler
钛媒体:引领未来商业与生活新知
钛媒体:引领未来商业与生活新知
量子位
Engineering at Meta
Engineering at Meta
博客园 - 叶小钗
T
The Blog of Author Tim Ferriss
Recent Announcements
Recent Announcements
罗磊的独立博客
B
Blog
让小产品的独立变现更简单 - ezindie.com
让小产品的独立变现更简单 - ezindie.com
U
Unit 42
Microsoft Azure Blog
Microsoft Azure Blog
D
Docker
N
Netflix TechBlog - Medium
Cyber Security Advisories - MS-ISAC
Cyber Security Advisories - MS-ISAC
B
Blog RSS Feed
I
InfoQ
freeCodeCamp Programming Tutorials: Python, JavaScript, Git & More
V
V2EX

NASA Science

Cosmic Origins at AAS 248, June 2026 - NASA Science Cosmic Structure SIG Seminar, 30 April 2026 - NASA Science CMB SAG Meeting, 24 April 2026 - NASA Science BBX SAG Meeting, 30 April 2026 - NASA Science Early Career Investigator Program – Earth Science (ROSES A.11) - NASA Science XR SIG Seminar, 1 May 2026 - NASA Science Night and (Earth) Day - NASA SWERV: High-Impact Historical Case Study - NASA Science AAS Meeting 248, June 2026 - NASA Science Earth Day 2026: Posters and Virtual Backgrounds - NASA Science Advancing Earth Observation at NASA since Release of Earthrise Photo - NASA Science X-59 Adds Freedom 250 Logo - NASA Belts of Green in the Washington Suburbs - NASA Science Artemis II Mission Milestones: An Image and Video Recap Curiosity Blog, Sols 4867-4872: Sand Fill In Antofagasta Crater and Finding Our Next Drill Target NASA Invites Media to Jordan Artemis Accords Signing Ceremony New NASA Views of Earth, From (S)PACE - NASA Science Crew Studies Biotech on Tuesday to Advance Health and Space Economy NASA Invests in Small Businesses Innovating for Space and Earth NASA at SXSW: Johnson Director Vanessa Wyche on Why Artemis Changes Everything Researchers: How Would You Extract Meaningful Insights from Just Four Astronauts? BBX SAG Meeting, 23 April 2026 - NASA Science Thailand’s Krabi Coast - NASA Science AI/ML STIG Lecture Series, 20 April 2026 - NASA Science SWERV: Training Overview and Agenda - NASA Science SWERV: REAL-TIME CAPABILITIES AND IONOSPHERIC DISRUPTIONS OF COMMUNICATIONS - NASA Science SWERV: Operationally Significant Phenomena and Impacts for Ground Operations - NASA Science SWERV: Space Weather Impacts on Satellites - NASA Science SWERV: Space Weather Chain of Events - NASA Science CSDA Quality Assessment Report Evaluates Satellogic NewSat Data - NASA Science
NASA Science: ODYSSEY—Analyzing Bacteria in Space, Simula...
Cinnamon Pri · 2026-05-12 · via NASA Science

Principal Investigator: 

  • Camilla Urbaniak, Voyager Technologies at NASA’s Jet Propulsion Laboratory 

Overview:  

The ODYSSEY investigation examines how bacteria behave in microgravity. Researchers will study two bacterial species to see how spaceflight affects their growth, their ability to form biofilms, and their capacity to exchange genetic material. These experiments could aid in the success of future missions and inform innovative approaches to curb the spread of infections in hospitals on Earth. Identical experiments will be run aboard the International Space Station and in microgravity simulators on Earth so scientists can compare results and determine whether certain types of ground-based simulators accurately replicate conditions in space. 

Science objectives: 

  • Examine how bacteria form biofilms — collections of cells that stick together on surfaces and can promote infection or damage to spacecraft water systems — in space and simulated microgravity 
  • Compare how readily bacteria exchange genetic material, such as antibiotic resistance genes, in spaceflight versus in Earth-based simulators  
  • Validate whether ground-based microgravity simulators accurately replicate spaceflight conditions for bacterial research 

Potential Earth applications: 

  • Could expand opportunities for microgravity research on Earth using simulators 
  • May inform strategies for controlling biofilm formation in healthcare settings and harsh environments  
  • Could contribute to understanding how bacteria develop antimicrobial resistance through gene transfer 

Potential space applications: 

  • Could help prevent biofilm damage to spacecraft water systems and equipment on long-duration missions  
  • May inform protocols for monitoring and controlling bacterial growth aboard the space station and future spacecraft 
  • Might help develop methods to prevent and treat spaceflight-induced illnesses on long-duration space missions 

Biological & Physical Sciences Division

  • NASA’s Biological and Physical Sciences Division pioneers scientific discovery and enables exploration by using space environments to conduct investigations not possible on Earth. Studying biological and physical phenomena under extreme conditions allows researchers to advance the fundamental scientific knowledge required to go farther and stay longer in space, while also benefitting life on Earth.