Artwork

American Society for Microbiology, Ashley Hagen, and M.S.에서 제공하는 콘텐츠입니다. 에피소드, 그래픽, 팟캐스트 설명을 포함한 모든 팟캐스트 콘텐츠는 American Society for Microbiology, Ashley Hagen, and M.S. 또는 해당 팟캐스트 플랫폼 파트너가 직접 업로드하고 제공합니다. 누군가가 귀하의 허락 없이 귀하의 저작물을 사용하고 있다고 생각되는 경우 여기에 설명된 절차를 따르실 수 있습니다 https://ko.player.fm/legal.
Player FM -팟 캐스트 앱
Player FM 앱으로 오프라인으로 전환하세요!

Sending Yeast to the Moon With Jessica Lee

34:00
 
공유
 

Manage episode 362574634 series 1537292
American Society for Microbiology, Ashley Hagen, and M.S.에서 제공하는 콘텐츠입니다. 에피소드, 그래픽, 팟캐스트 설명을 포함한 모든 팟캐스트 콘텐츠는 American Society for Microbiology, Ashley Hagen, and M.S. 또는 해당 팟캐스트 플랫폼 파트너가 직접 업로드하고 제공합니다. 누군가가 귀하의 허락 없이 귀하의 저작물을 사용하고 있다고 생각되는 경우 여기에 설명된 절차를 따르실 수 있습니다 https://ko.player.fm/legal.
Dr. Jessica Lee, scientist for the Space Biosciences Research Branch at NASA’s AIMS Research Center in Silicon Valley uses both wet-lab experimentation and computational modeling to understand what microbes really experience when they come to space with humans. She discusses space microbiology, food safety and microbial food production in space and the impacts of microgravity and extreme radiation when sending Saccharomyces cerevisiae to the moon. Ashley's Biggest Takeaways
  • Lee applied for her job at NASA in 2020.
  • Prior to her current position, she completed 2 postdocs and spent time researching how microbes respond to stress at a population level and understanding diversity in microbial populations.
  • She has a background in microbial ecology, evolution and bioinformatics.
  • Model organisms are favored for space research because they reduce risk, maximize the science return and organisms that are well understood are more easily funded.
  • Unsurprisingly, most space research does not actually take place in space, because it is difficult to experiment in space.
  • Which means space conditions must be replicated on Earth.
  • This may be accomplished using creative experimental designs in the wet-lab, as well as using computational modeling.
Links for the Episode:

Let us know what you thought about this episode by tweeting at us @ASMicrobiology or leaving a comment on facebook.com/asmfan.

  continue reading

163 에피소드

Artwork
icon공유
 
Manage episode 362574634 series 1537292
American Society for Microbiology, Ashley Hagen, and M.S.에서 제공하는 콘텐츠입니다. 에피소드, 그래픽, 팟캐스트 설명을 포함한 모든 팟캐스트 콘텐츠는 American Society for Microbiology, Ashley Hagen, and M.S. 또는 해당 팟캐스트 플랫폼 파트너가 직접 업로드하고 제공합니다. 누군가가 귀하의 허락 없이 귀하의 저작물을 사용하고 있다고 생각되는 경우 여기에 설명된 절차를 따르실 수 있습니다 https://ko.player.fm/legal.
Dr. Jessica Lee, scientist for the Space Biosciences Research Branch at NASA’s AIMS Research Center in Silicon Valley uses both wet-lab experimentation and computational modeling to understand what microbes really experience when they come to space with humans. She discusses space microbiology, food safety and microbial food production in space and the impacts of microgravity and extreme radiation when sending Saccharomyces cerevisiae to the moon. Ashley's Biggest Takeaways
  • Lee applied for her job at NASA in 2020.
  • Prior to her current position, she completed 2 postdocs and spent time researching how microbes respond to stress at a population level and understanding diversity in microbial populations.
  • She has a background in microbial ecology, evolution and bioinformatics.
  • Model organisms are favored for space research because they reduce risk, maximize the science return and organisms that are well understood are more easily funded.
  • Unsurprisingly, most space research does not actually take place in space, because it is difficult to experiment in space.
  • Which means space conditions must be replicated on Earth.
  • This may be accomplished using creative experimental designs in the wet-lab, as well as using computational modeling.
Links for the Episode:

Let us know what you thought about this episode by tweeting at us @ASMicrobiology or leaving a comment on facebook.com/asmfan.

  continue reading

163 에피소드

모든 에피소드

×
 
Loading …

플레이어 FM에 오신것을 환영합니다!

플레이어 FM은 웹에서 고품질 팟캐스트를 검색하여 지금 바로 즐길 수 있도록 합니다. 최고의 팟캐스트 앱이며 Android, iPhone 및 웹에서도 작동합니다. 장치 간 구독 동기화를 위해 가입하세요.

 

빠른 참조 가이드