2020
DOI: 10.1016/j.patter.2020.100120
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Pancreatlas: Applying an Adaptable Framework to Map the Human Pancreas in Health and Disease

Abstract: Summary Human tissue phenotyping generates complex spatial information from numerous imaging modalities, yet images typically become static figures for publication, and original data and metadata are rarely available. While comprehensive image maps exist for some organs, most resources have limited support for multiplexed imaging or have non-intuitive user interfaces. Therefore, we built a Pancreatlas resource that integrates several technologies into a unique interface, allowing users to access ric… Show more

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Cited by 12 publications
(8 citation statements)
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“…A powerful addition of the biobanks is the metadata‐rich data repositories, such as digitalized pathology e‐slides from nPOD DataShare 10 and HPAP, 9 the Pancreatlas with multimodal imaging data 11 and large‐scale EM maps and analytical data via nanotomy.org by our group 12 . These vast amounts of digitalized data are highly suitable for unbiased (automated) image analysis.…”
Section: Light Microscopy: Identification Of Cells and Molecules In Fixed Tissuementioning
confidence: 99%
“…A powerful addition of the biobanks is the metadata‐rich data repositories, such as digitalized pathology e‐slides from nPOD DataShare 10 and HPAP, 9 the Pancreatlas with multimodal imaging data 11 and large‐scale EM maps and analytical data via nanotomy.org by our group 12 . These vast amounts of digitalized data are highly suitable for unbiased (automated) image analysis.…”
Section: Light Microscopy: Identification Of Cells and Molecules In Fixed Tissuementioning
confidence: 99%
“…This movement toward open sharing of data and data-mining tools has reshaped scientific inquiry and discovery by facilitating a tremendous opportunity to repurpose the freely available data to either generate novel hypotheses for empirical testing in experimental models and clinical samples or to mine the data with specific questions. At present, the dissemination of open source data extend beyond the traditional omics platforms and encompasses large-scale datasets from spatial atlases (eg, Pancreatlas [2] ; http://www.pancreatlas.org) of different tissues in various organisms, thus providing affirmation for the success of the open source data sharing concept. However, the precious open data resources are still largely underutilized.…”
Section: The Evolution Of Open Source Data Sharing In Biomedical Rese...mentioning
confidence: 99%
“…org/ d atase ts/53 1/ove rview). Dr Brissova and her colleagues at Vanderbilt University participate on various levels in all five programs, four of which are currently connected via the data-agnostic Pancreatlas platform (Saunders et al 2020) (https://pancreatlas.org/), a curated resource to share imaging datasets developed by the Vanderbilt team. To integrate functional, genomic and genetic data with key donor characteristics across age, sex, ancestry and disease state, a robust islet phenotyping pipeline was developed (Brissova et al 2018, Hart et al 2018…”
Section: Journal Of Endocrinologymentioning
confidence: 99%