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SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.
http://www.cdc.gov/nceh/tracking
The goal of environmental public health tracking is to protect communities by providing information to federal, state, and local agencies. These agencies, in turn, will use this information to plan, apply, and evaluate public health actions to prevent and control environmentally related diseases. Environmental public health tracking is the ongoing collection, integration, analysis, and interpretation of data about the following factors: :- Environmental hazards :- Exposure to environmental hazards :- Health effects potentially related to exposure to environmental hazards CDC''s goal is to develop a tracking system that integrates data about environmental hazards and exposures with data about diseases that are possibly linked to the environment. This system will allow federal, state, and local agencies, and others to do the following: :- monitor and distribute information about environmental hazards and disease trends :- advance research on possible linkages between environmental hazards and disease :- develop, implement, and evaluate regulatory and public health actions to prevent or control environment-related diseases. Planning for an environmental public health tracking network is an important priority for CDC because of the opportunity it provides to address some of the most challenging problems facing local, state, and national public health leaders. From the outset, this activity has involved substantial collaboration between CDC and its public health and environmental partners (e.g., see the memorandum of understanding between HHS/CDC and the Environmental Protection Agency). Sponsors: This resource is supported by the Center for Disease Control and Prevention. Keywords: Environment, Public, Health, Disease, Analysis, Integration, Data, Hazard, Health, Prevention,
Proper citation: National Environmental Public Health Tracking Program (RRID:SCR_012832) Copy
Providing quality resources for the management of cerebral aneurysms and features an online calculator that calculates cerebral aneurysm volume and percent packing volume after coil embolization. The site also host an imaging Library with neuroanatomy and neurovascular images.
Proper citation: AngioCalc Cerebral Aneurysm Calculator (RRID:SCR_012805) Copy
https://wiki.zfin.org/display/prot/ZFIN+Protocol+Wiki
ZFIN Protocol Wiki is where zebrafish researchers can share experimental protocols and tips with the rest of the research community. Protocols are organized into sections corresponding to the chapters of The Zebrafish Book, 5th edition (4th edition on-line). Feel free to add new protocols to the appropriate section or add comments to any existing protocol. Sections * General Methods for Zebrafish Care * Breeding * Embryonic and Larval Culture * Imaging * Cellular Methods * Dissociated Cell Culture * Genetic Methods * Antisense Methods * Histological Methods * in situ Hybridization Techniques * Mapping * Transgenesis * Gene Cloning * DNA Analysis * RNA Analysis * Protein Analysis * Microarray * Recipes
Proper citation: ZFIN Protocol Wiki (RRID:SCR_013239) Copy
A not-for-profit alliance of 23 cancer centers devoted to patient care, research, and education, is dedicated to improving the quality, effectiveness, and efficiency of cancer care so that patients can live better lives. Through the leadership and expertise of clinical professionals at NCCN Member Institutions, NCCN develops resources that present valuable information to the numerous stakeholders in the health care delivery system. As the arbiter of cancer care, NCCN promotes the importance of continuous quality improvement and recognizes the significance of creating clinical practice guidelines appropriate for use by patients, clinicians, and other health care decision-makers.
Proper citation: NCCN (RRID:SCR_012959) Copy
http://www.functionalglycomics.org
This Gateway is a collaboration between the Consortium for Functional Glycomics (CFG) and Nature Publishing Group (NPG), providing a comprehensive resource for functional glycomics research. Use this site to stay up-to-date on glycomics news, request CFG resources, and search databases of glycan-binding proteins, glycan structures, and glycosyltransferases. The Functional Glycomics Update provides a one-stop overview of the latest research in glycobiology for specialists and non-specialists alike. It is updated monthly to bring you the latest news and selected highlights from Nature journals. In addition, it will provide two featured articles a month on the most relevant advances in the field published in NPG and other top journals. By collating new articles into a key worded research library, we hope to provide a continuously updated and broad overview of the field. Sponsor. The CFG is a large international research initiative funded by NIGMS to elucidate the roles of carbohydrate-protein interactions in cell communication at the cell surface.
Proper citation: Functional Glycomics Research (RRID:SCR_013337) Copy
http://www.ritsumei.ac.jp/~akitaoka/index-e.html
This portal describes Professor Kitaoka Akiyoshi''s research in the science of visual illusions. Working as an associate professor at the Ritsumeiken University, Department of Psychology, he is one of the few researchers in Japan to be actively researching in this field of study. Professor Kitaoka defines an illusion as a misperception of a real object, adding that defining what is real is a difficult task that depends on recognition and epistemology. An illusion is formed when the perceived characteristics of the object differ from the physical characteristics. Professor Kitaoka first started studying visual illusions when working at the Tokyo Metropolitan Institute for Neuroscience, before coming to RU. He currently researches geometrical, color, lightness, and motion illusions and visual completion, and has become a prominent expert in the field, publishing a wide range of articles on the subject as well as the popular books Trick Eyes, Trick Eyes 2, Trick Eyes Graphics, and the Handbook of the Science of Illusion. To create his illusions, Professor Kitaoka uses graphic design software such as CorelDRAW, Adobe Illustrator, and the drawing software included in Microsoft Word in addition to making use of programming languages like Borland Delphi (Pascal). All of the images set out to test hypotheses that serve to advance his study of illusions and their applications for other visual functions. The goal of his research is to test visual mechanisms through visual illusions.
Proper citation: Akiyoshis illusion pages (RRID:SCR_013187) Copy
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 2, 2022. Much of the current effort in functional genomics, and our understanding of the biology of human disease, is underpinned by informatics infrastructures served by the scattered collection of relevant databases which exists in Europe. This infrastructure is essential for the support of a European Research Area in mouse functional genomics. CASIMIR, a coordination action of the 6th Framework Programme of the European Commission, will focus on co-ordination and integration of databases set up in support of FP5 and FP6 projects containing experimental data, including sequences, and material resources such as biological collections, relevant to the use of the mouse as a model organism for human disease. Interoperability of disseminated databases potentially provides enormous synergy in the provision, integration and analysis of a wide range of data with concomitant added value for research projects. Having set standards and benchmarks the proposed action will then reach out to co-ordinate other European and International databases and consult with the Community. EU FlagThe CASIMIR project is funded by the European Commission within its FP6 Programme, under the thematic area Life sciences, genomics and biotechnology for health, contract number LSHG-CT-2006-037811
Proper citation: Coordination and sustainability of international mouse informatics resources (RRID:SCR_013345) Copy
The incidence of Creutzfeldt-Jakob disease (CJD) is monitored in the UK by the National CJD Surveillance Unit (NCJDSU) based at the Western General Hospital in Edinburgh, Scotland. The Unit brings together a team of clinical neurologists, neuropathologists and scientists specialising in the investigation of this disease. This document is intended to summarise the research in progress at the NCJDSU and also provide some background information about CJD and other human spongiform encephalopathies. We have also provided some links to other resources and contrary points of view available on the Web.
Proper citation: NCJDSU (RRID:SCR_013183) Copy
https://www.niddk.nih.gov/research-funding/research-programs/kidney-disease-centers
A portal with detailed information about various research centers that focus on kidney disease and translational research funded by NIDDK.
Proper citation: Polycystic Kidney Disease Research and Translation Centers (RRID:SCR_015305) Copy
Foundation to support research in and diagnosis of adrenal diseases. The portal provides basic information about adrenal diseases as well as a community for patients.
Proper citation: National Adrenal Diseases Foundation (RRID:SCR_015007) Copy
https://clinicalstudydatarequest.com/Default.aspx
Consortium of clinical study data providers. Its aim is to help the data sharing community drive scientific progress and improve medical care by facilitating access to patient-level data from clinical studies.
Proper citation: ClinicalStudyDataRequest.com (CSDR) (RRID:SCR_015512) Copy
https://www.med.upenn.edu/idom/
NIDDK center that serves diabetes-oriented investigators from University of Pennsylvania as well as additional institutions from the mid-Atlantic region. The Penn DRC represents many basic science and clinical departments at Penn and the other institutions, and supports research in diabetes and obesity via Scientific Cores, a Pilot and Feasibility Grant Program, and a series of seminars, retreats, and other academic enrichment activities.
Proper citation: University of Pennsylvania Diabetes Research Center (RRID:SCR_015732) Copy
https://zenodo.org/record/167621
Simulation environment that combines flexible script language user interface with computational tools in order to setup cardiac electrophysiology in-silico experiments without re-coding at low-level. It aims to include cell excitation, tissue/anatomy models, and stimulation protocols in BeatBox scripts so that simulation run either sequentially or in parallel (MPI) without re-compilation.
Proper citation: BeatBox (RRID:SCR_015780) Copy
Commercial provider of purpose-bred animals for biomedical research. They provide dogs, pigs, ferrets, mice, and guinea pigs in physically and psychologically healthy condition.
Proper citation: Marshall BioResources (RRID:SCR_015489) Copy
https://github.com/cerebis/sim3C/tree/0.1
Software for read-pair simulation of 3C-based sequencing methodologies (HiC, Meta3C, DNase-HiC). Sim3C's potential applications include addressing questions directed at the spatial organization of DNA in samples of eukaryotic tissue, single cells, and microbial communities.
Proper citation: Sim3C (RRID:SCR_015772) Copy
Simulation software for experimental evolution of microorganisms. Aevol is a digital genetics model for the study of structural variations of the genome (e.g. number of genes, synteny, proportion of coding sequences).
Proper citation: Aevol (RRID:SCR_015966) Copy
Consortium for the cell census in the brain. Integrated network of data generating centers, data archives, and data standards developers, with the goal of systematic multimodal brain cell type profiling and characterization. Emphasis of the BICCN is on the whole mouse brain with demonstration of prototype feasibility for human and nonhuman primate brains.
Proper citation: BICCN (RRID:SCR_015820) Copy
Consortium studying the regulation and alternative splicing of gene expression in multiple tissues from human brains. The UKBEC dataset comprises of brains from individuals free of neurodegenerative disorders.
Proper citation: UK Brain Expression Consortium (RRID:SCR_015889) Copy
https://hirnetwork.org/consortium/ctar
Consortium that is an independent research initiative of the Human Research Information Network (HIRN). It is investigating methods to increase or maintain functional beta cell mass in T1D through targeted manipulation of islet plasticity or engineered protection of beta cells from immune-mediated destruction.
Proper citation: HIRN Consortium on Targeting and Regeneration (RRID:SCR_016201) Copy
http://abacus.gene.ucl.ac.uk/software/indelible/
Software that generates nucleotide, amino acid and codon sequence data by simulating insertions and deletions (indels) as well as substitutions. It is used for biological sequence simulation of multi-partitioned nucleotide, amino-acid, or codon data sets through the processes of insertion, deletion, and substitution in continuous time.
Proper citation: Indelible (RRID:SCR_016163) Copy
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