Reproducibility, sharing and progress in nanomaterial databases.

scientific article published in December 2017

Reproducibility, sharing and progress in nanomaterial databases. is …
instance of (P31):
scholarly articleQ13442814
review articleQ7318358

External links are
P356DOI10.1038/NNANO.2017.233
P2888exact matchhttps://scigraph.springernature.com/pub.10.1038/nnano.2017.233
P698PubMed publication ID29209007

P50authorAlexander TropshaQ4720252
P2093author name stringKarmann C Mills
Anthony J Hickey
P2860cites workSizing the Problem of Improving Discovery and Access to NIH-Funded Data: A Preliminary StudyQ21398203
The Protein Data BankQ24515306
The FAIR Guiding Principles for scientific data management and stewardshipQ27942822
Quantitative nanostructure-activity relationship modelingQ28385022
Nanoinformatics for environmental health and biomedicineQ28385485
ISA-TAB-Nano: a specification for sharing nanomaterial research data in spreadsheet-based formatQ28395696
Computer-aided design of carbon nanotubes with the desired bioactivity and safety profilesQ28829021
Perspective: Sustaining the big-data ecosystemQ31017600
NanoParticle Ontology for cancer nanotechnology researchQ34587815
Experiences in supporting the structured collection of cancer nanotechnology data using caNanoLabQ35794701
Exploring quantitative nanostructure-activity relationships (QNAR) modeling as a tool for predicting biological effects of manufactured nanoparticlesQ37833114
Meta-analysis of cellular toxicity for cadmium-containing quantum dotsQ39960471
Nanomaterial registry: database that captures the minimal information about nanomaterial physico-chemical characteristicsQ47339474
nanoHUB.org: cloud-based services for nanoscale modeling, simulation, and educationQ57368211
Joining the reproducibility initiativeQ86169382
P433issue12
P407language of work or nameEnglishQ1860
P921main subjectnanomaterialQ967847
reproducibilityQ1425625
P304page(s)1111-1114
P577publication date2017-12-01
P1433published inNature NanotechnologyQ920399
P1476titleReproducibility, sharing and progress in nanomaterial databases.
P478volume12

Reverse relations

cites work (P2860)
Q64039509Exploiting machine learning for end-to-end drug discovery and development
Q64112154How to design preclinical studies in nanomedicine and cell therapy to maximize the prospects of clinical translation
Q89674196Quality of physicochemical data on nanomaterials: an assessment of data completeness and variability
Q106866367Reliable Surface Analysis Data of Nanomaterials in Support of Risk Assessment Based on Minimum Information Requirements
Q91322725Reopening the dialogue
Q113605960Towards FAIR nanosafety data

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