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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.nitrc.org/projects/tumorsim/
Simulation software that generates pathological ground truth from a healthy ground truth. The software requires an input directory that describes a healthy anatomy (anatomical probabilities, mesh, diffusion tensor image, etc) and then outputs simulation images.
Proper citation: TumorSim (RRID:SCR_002604) Copy
THIS RESOURCE IS NO LONGER IN SERVICE, documented on January 08, 2013. A consortium of three facilities whose purpose is to establish, characterize, and distribute novel mutant mouse models with neural and/or behavioral phenotypes, and distribute them to the worldwide research community. Interested scientists are able to obtain information about mouse lines at all three sites in a single unified database. GOALS * Increase genomic and genetic tools for functional gene identification * Provide mice with mutations that alter the nervous system or behavior * Build collaborations between geneticists and neuroscientists The consortium is made up of three mutagenesis and phenotypic screening facilities, focused on identifying alterations in nervous system function and behavior, and established by NIH. They are the Neurogenomics Project at Northwestern University, the Neuroscience Mutagenesis Facility at The Jackson Laboratory, and the Neuromutagenesis Project of the Tennessee Mouse Genome Consortium. The NIH Neurogenomics Project at Northwestern University is directed by Dr. Joseph S. Takahashi, who also acts as the Director of the Neuromice.org consortium. Chemical mutagenesis is used to induce mutations throughout the genome and combined with phenotypic screens to detect mice with mutations. In order to maximize the genomic coverage and recover both dominant and recessive mutations, a dominant G1 screen and a recessive G3 screen are utilized. Phenotypic screens focus on five primary domains: learning and memory, behavioral responses to stress, responses to psychostimulants, circadian rhythmicity, and vision. The Neuroscience Mutagenesis Facility at the Jackson Laboratory is directed by Dr. Wayne N. Frankel. The Neuroscience Mutagenesis Facility is using a three-generation backcross breeding scheme to produce homozygous mutants and will thus recover dominant, semidominant, and recessive mutations. In addition, some mutagenesis will be done in ES cells followed by two generations of breeding. Phenotypic screens focus on identifying mutations affecting: motor function, seizure threshold, hearing, vision, and neurodevelopment. The Neuromutagenesis Project of the Tennessee Mouse Genome Consortium (TMGC) involves researchers throughout the state of Tennessee, under the direction of Dr. Daniel Goldowitz, Ph.D., at the University of Tennessee Health Science Center, Memphis. TMGC also includes researchers at Oak Ridge National Laboratory, Vanderbilt University, Meharry Medical College, University of Tennessee-Knoxville, St. Jude Children's Research Hospital, and the University of Memphis. The Project is using regional mutagenesis, covering regions on chromosomes 10, 14, 15, 19, and X, thus including approximately 15 of the genome in the screened region. Phenotypic screens include: motor and sensory function, learning and memory, neurohistology, aging, alcohol response, abused drug response, visual function, and social behavior. Neuromice.org has stopped taking orders online but mutants are orderable please contact the originating center for availability and pricing details. Live targeted mutant Fragile X model mice are now available for distribution.
Proper citation: neuromice (RRID:SCR_002993) Copy
Center that supplies access to wild-type, mutant, and transgenic zebrafish lines, EST's/cDNAs, antibodies and fish health services. ZIRC Health Services include diagnostic pathology testing for zebrafish and other small laboratory fish species.
Proper citation: Zebrafish International Resource Center (RRID:SCR_005065) Copy
https://www.aplysia.earth.miami.edu/
Center where Aplysia californica are cultured and raised for research purposes. Aplysia from the facility serve in research on genomics, human brain function, toxicology for developmental studies, natural products, chemistry for isolation of novel anti-tumor and antibacterial compounds, in the study of transport by digestive tissues and have potential for use in studies of substance addiction and nerve senescence and regeneration.
Proper citation: National Resource for Aplysia (RRID:SCR_008361) 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
Text-mining software that reviews methods sections of scientific articles. It provides a numerical score to represent the "reproducibility" of the article's research.
Proper citation: SciScore (RRID:SCR_016251) Copy
https://hirnetwork.org/consortium/chib
Consortium that is an independent research initiative of the Human Research Information Network (HIRN). It is combining advances in beta cell biology and cell biology with tissue engineering technologies to develop microdevices that support functional human islets.
Proper citation: HIRN Consortium on Human Islet Biomimetics (RRID:SCR_016199) Copy
https://hirnetwork.org/consortium/cbds
Consortium that is an independent research initiative of the Human Research Information Network (HIRN). It is using human tissues to discover highly specific biomarkers of beta cell injury in asymptomatic T1D and developing strategies to stop beta cell destruction early in the disease process.
Proper citation: HIRN Consortium on Beta Cell Death and Survival (RRID:SCR_016198) Copy
https://hirnetwork.org/project/hirncc
Consortium that provides infrastructure to promote communication and collaboration among current and future HIRN participants, facilitating scientific advances and the sharing of data, tools, and reagents among HIRN members and the research community at large.
Proper citation: HIRN Coordinating Center (RRID:SCR_016395) Copy
Simulation software for improving the performance of real systems. Used for developing, analyzing, and packaging dynamic feedback models.
Proper citation: Vensim (RRID:SCR_016394) Copy
https://www.jax.org/jax-mice-and-services
Supplier of mice for research purposes.
Proper citation: JAX Mice and Services (RRID:SCR_016408) Copy
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