"making the web work for science" - nci cbiit
DESCRIPTION
Virtual presentation given to the NCI's Cancer Informatics team. October 15, 2014.TRANSCRIPT
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kaitlin thaney@kaythaney ; @mozillascience
NCI / 15 oct 2014
making the web work for science
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doing good is part of our code
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help researchers use the power of the open web to change science’s future.
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(0)
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power, performance, scale
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our current systems are designed to create
friction.despite original intentions.
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current state of science
articlesdata
patents
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some have a firehose
articlesdata
patents
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traditions last not because they are excellent, but because influential people are averse to change and because of the sheer burdens of
transition to a better state ...
“
“Cass Sunstein
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downside of output-driven recognition systems
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“There’s greater reward, and more temptation to
bend the rules.”- David Resnik, bioethicist
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(1)
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leveraging the power of the web for scholarship
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- access to content, data, code, materials.- emergence of “web-native” tools.- rewards for openness, interop, collaboration, sharing.- push for ROI, reuse, recomputability, transparency.
“web-enabled research”
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what do we mean by “open research”?
community technology practices
collaborative interoperable open review
participatory discoverable data management
recognition open tools sharing / reuse
mentorship designed for reuse
documentation / versioning
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we’re rewarding the wrong behavior.
at the sacrifice of scientific progress.
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Source: Michener, 2006 Ecoinformatics.
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Source: Wolkovich et al. GCB 2012.
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“... up to 70 percent of research from academic labs cannot be reproduced, representing an enormous waste of money and effort.” - Elizabeth Iorns, Science Exchange
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wasted ...$$$time
resourceopportunity
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instill best (digital,
reproducible) practice
“research hygiene”
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(2)
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shifting practice takes a multi-faceted approach.
looking beyond “open” science.
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research social capital capacity
infrastructure layers for efficient, reproducible research
open toolsstandards
best practicesresearch objectsscientific software
repositories
incentivesrecognition / P&Tinterdisciplinarity
collaborationcommunity dialogue
trainingmentorship
professional devnew policiesrecognition
stakeholders: universities, researchers, tool dev, funders, publishers ...
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freedom to prototype and innovate.
(connecting the dots.)
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our systems need to talk to one another.
leveraging open technology, existing infrastructure.
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code as a research objectwhat’s needed to reuse ?
http://bit.ly/mozfiggit
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code as a research object
http://xkcd.com/285/
http://bit.ly/mozfiggit
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(community driven)metadata for software discovery: JSON-LD
http://bit.ly/mozfiggit
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our practices are limiting us.
how to further adoption of open, web-enabled science?
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socialsoftwarehardware
infrastructure layers
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“web-enabled science”- access to content, data, code, materials.- emergence of “web-native” tools.- rewards for openness, interop, collaboration, sharing.- push for ROI, reuse, recomputability, transparency.
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“web-enabled science”what’s missing?
- access to content, data, code, materials.- emergence of “web-native” tools.- rewards for openness, interop, collaboration, sharing.- push for ROI, reuse, recomputability, transparency.
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current activity:235+ instructors
(60+, training)4000+ learners
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rethinking “professional development”
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focus on building capacity, not just more nodes.
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fostering a (sustainable) community of practitioners
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(4)
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shifting practice (and getting it to stick)
is challenging.(takeaways and closing caveats.)
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63 nations 10,000 scientists
50,000 participants
can we do the same for research on the web?
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tools and technologycultural awareness, best practice
connections, open dialogueskills training
what are the necessary components?
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Source: Piwowar, et al. PLOS.
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1. bake reproducible practices into the fabric of
research.
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2. design to unlock latent potential of our systems.
(the technology is already there.)
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3. rethink how we reward researchers and support
roles. (and don’t be afraid to hit refresh.)
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4. be mindful of jargon/semantics traps.
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