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Software Python package to automate building of ML pipelines by combining flexible expression tree representation of pipelines with stochastic search algorithms such as genetic programming.
Proper citation: Tree-Based Pipeline Optimization Tool (RRID:SCR_017531) Copy
http://celeganskoconsortium.omrf.org
THIS RESOURCE IS NO LONGER IN SERVCE, documented September 2, 2016. The mission of the C. elegans Gene Knockout Consortium is to facilitate genetic research of this important model system through the production of deletion alleles at specified gene targets. We choose targets based on investigator requests. Strains produced by the consortium are freely available with no restrictions to any investigator. At one time, our capacity dictated that we restrict requests to five per lab. This restriction no longer holds. Investigators are encouraged especially to register requests for functionally related groups of genes. Consortium strains are distributed by the C. elegans Genetic Center (CGC). In most cases, when you use the Consortium web site to request an existing allele, your request is forwarded automatically to the CGC. However, if you indicate that an existing allele is not satisfactory for your research, (for whatever reason), you may request that we generate another allele for the same target. Any information generated by the Consortium is entered into the official C. elegans data repository, WormBase.
Proper citation: C. elegans Gene Knockout Consortium (RRID:SCR_003000) Copy
http://www.anim.med.kyoto-u.ac.jp/nbr/default.aspx
NBRP-Rat was established to overcome limitations associated with properly utilizing existing rat resources. The collection of existing strains and genetic sub strains, phenotypic and genotypic characterization, cryopreservation of embryos, distribution of the collected rat strains, and a publicly accessible database of all assembled data are the major goals of this project. Once achieved, this unique database including the unique rat strains will become a powerful tool for biomedical research. A catalog of comparable, standardized and well characterized rat strains will lead to new and more precise research topics as well as it will facilitate biomedical sciences, drug discovery, advanced chemical research, and contributes to life sciences worldwide. As mentioned before, the major goals of NBRP-Rat are the collection, preservation and supply of rat strains. The repository includes strains from Japan and abroad, spontaneous mutants, congenic and recombinant strains as well as transgenic and mutagenized rats. Deposited rat strains are not only conserved as cryopreserved embryos and sperm. Many reference and frequently used rat strains are also maintained as living animals under SPF conditions. Furthermore, NBRP-rat provides a unique database on various rat strain phenotypes accompanied with basic genetic information. This allows scientists the selection of standardized and research specific strains. The animals themselves are provided free of charge to the research community (except for shipping costs). Sponsors: This project is one part of the National BioResource Projects (NBRP) in Japan for more than 20 species including animals, plants, microbes, tissues and DNAs. It is founded by the Japanese Ministry of Education, Culture, Sports, Science and Technology (Monkasho) and started in 2002.
Proper citation: National Bio Resource Project for the Rat. (RRID:SCR_012774) Copy
https://www.sfari.org/funding-opportunities/
The mission of SFARI is to improve the diagnosis, treatment, and prevention of autism and related developmental disorders. SFARI explores neuroscience from multiple directions, including molecular, cellular, systems, immunological, cognitive, behavioral, genetic, theoretical and computational perspectives. Funding for innovative scientific research is available through a peer-reviewed proposal process at regular intervals. Research projects are reviewed by a scientific advisory board and managed by the scientific director and a highly qualified staff. Proposals in multiple research areas are sought, to reflect the complex nature of autism. The Foundation supports innovative scientific projects where our involvement will play an essential role. In the course of this support, The Foundation is interested in partnering with other entities, or providing matching support where appropriate. The Simons Foundation has historically accepted only solicited grant proposals. These grant decisions are made by the Trustees of The Simons Foundation, who review applications on an ongoing basis. In the area of autism research, requests for proposals are issued on an annual basis. The Simons Foundation does not give grants to individuals, except through their institutions.
Proper citation: Simons Foundation Autism Research Initiative: Grant Resource (RRID:SCR_001862) Copy
http://www.mknt.hu/sites/default/files/NEPSYBANK_0.doc
The Hungarian Society of Clinical Neurgenetics established a nationwide collaboration for prospective collection of human biological materials and databases from patient with neurological and psychiatric diseases. The basic triangle of the NEPSYBANK is the sample, the information and the study management. The present participants of the NEPSYBANK are the Department of Neurology and Psychiatry of the four Medical Universities (in Budapest, Debrecen, Pecs, Szeged) and the National Institute of Psychiatry and Neurology in Budapest. The NEPSYBANK is a disease based biobank collecting both phenotypical and environmental data and biological materials such as DNA/RNA, whole blood, plasma, cerebral spinal fluid, muscle / nerve / skin biopsy, brain, and fibroblast. The target of the diseases is presently (Phase I): stroke syndromes, dementias, movement disorders, motoneuron diseases, epilepsy, multiple sclerosis, schizophrenia, alcohol addiction. In the near future (Phase II.) it is planned to enlarge the scale with headaches, disorders of the peripheral nerves, disorders of neuromuscular transmission, disorders of skeletal muscle, depression, anxiety. DNA/RNA is usually extracted from whole blood, but occasionally different tissues such as muscle, brain etc. can be used as well. The extracting procedures differ among the institutes, but in all cases the concentration and the quality of the DNA/RNA must be registered in the database. Participating institutional biobanks have committed themselves to follow common quality standards, which provide access to samples after prioritization on scientific grounds only. In every case the following data are registered. 1. General data: main bank categories, age, sex, ethnicity, body height, body weight, economic stats, education, type of place of living, marital status, birth complications, alcohol, drugs, smoking. 2. Sample properties (sample ID, type of sample, date of extraction, concentration, and level of purity). General patient data as blood pressure, heart rate, internal medical status, ECG, additional diseases. Disease specific question e.g. in schizophrenia the diagnosis after DSMIV and ICD 10, detailed diagnostic questions after both classification, detailed psychiatric and neurological status, laboratory findings, rating scales, data of neuroimaging, genetic tests, applied medication (with generic name, dose, duration), adverse drug effects and other treatments. The Biobank Information Management System (BIMS) is responsible for linkage of databases containing information on the individual sample donors. If you want to have samples from the NEPSYBANK an application must be submitted containing the following information: short research plan including aims and study design, ethic application with a positive decision, specific demands regarding the right of disposition, agreements with grant organizations which regulate immaterial property, information about financing (academic grants, support from industry). All participants have the right to withdraw their samples through a simple order.
Proper citation: Hungarian Neurological-Psychiatric Biobank (RRID:SCR_003715) Copy
Software package that provides full solution to next generation sequencing data analysis consisting of an alignment tool (SOAPaligner/soap2), a re-sequencing consensus sequence builder (SOAPsnp), an indel finder ( SOAPindel ), a structural variation scanner ( SOAPsv ), a de novo short reads assembler ( SOAPdenovo ), and a GPU-accelerated alignment tool for aligning short reads with a reference sequence. (SOAP3/GPU)., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: SOAP (RRID:SCR_000689) Copy
http://cran.r-project.org/web/packages/meta/index.html
Software application for fixed and random effects meta-analysis. Functions for tests of bias, forest and funnel plot. (entry from Genetic Analysis Software)
Proper citation: R/META (RRID:SCR_009175) Copy
http://gaow.github.io/genetic-analysis-software/e-1.html#ehp
Software application that provides variance estimates for haplotype frequency estimates, it allows several kinds of missing information in the genotype data, it also allows for combined genotype data of different pool sizes. This program can be used for testing haplotype-disease associations in case control studies by calculating the likelihood ratio test: 2 log(likelihood for cases) + 2 log(likelihood for controls) - 2 log(likelihood for case+controls). (entry from Genetic Analysis Software)
Proper citation: EHP (RRID:SCR_009170) Copy
http://www.sph.umich.edu/csg/chen/ghost/
Software package for family-based genomewide association (GWA) analysis, with the ability to infer missing genotypes using the Elston-Stewart algorithm. When SNPs from an association panel are less complete (i.e., having more missing genotypes) than markers from a linkage panel, many of the missing genotypes can be determined. GHOST can handle large pedigrees -- when pedigrees are small, Merlin is also recommended for this analysis. (entry from Genetic Analysis Software)
Proper citation: GHOST (RRID:SCR_009209) Copy
https://github.com/gaow/genetic-analysis-software/blob/master/pages/GENTOOLS.md
Software application for analysis and manipulation of genetic linkage data of genetic linkage data, including conversions of pedigree files between CRI-MAP and LINKAGE format. (entry from Genetic Analysis Software)
Proper citation: GENTOOLS (RRID:SCR_009205) Copy
http://lbm.ab.a.u-tokyo.ac.jp/~ukai/gest98.html
Software application (entry from Genetic Analysis Software), THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: GEST (RRID:SCR_009206) Copy
http://www.genoproof.com or http://qualitype.de/genoproof/
Software package for the analysis of multiplex PCR kits within the scope of paternity testing, kinship cases and population studies. GenoProof offers: (1) probably the most extensive existing population database for all supported markers of more than 50 ethnic groups, (2) individually configurable quality assurance options, (3) complex concept of user rights in order to guarantee data security, (4) languages German and English (entry from Genetic Analysis Software)
Proper citation: GENOPROOF (RRID:SCR_009204) Copy
http://www.sanger.ac.uk/resources/software/genevar/
A database and Java tool designed to integrate multiple datasets, and provides analysis and visualization of associations between sequence variation and gene expression in eQTL studies. Genevar allows researchers to investigate eQTL (expression quantitative trait loci) associations within a gene locus of interest in real time. The database and application can be installed on a standard computer in database mode and, in addition, on a server to share discoveries among affiliations or the broader community over the internet via web services protocols. (entry from Genetic Analysis Software)
Proper citation: GENEVAR (RRID:SCR_009201) Copy
http://wpicr.wpic.pitt.edu/WPICCompGen/ehap__v1.htm
Software application detecting association between haplotypes and phenotypes (entry from Genetic Analysis Software)
Proper citation: EHAP (RRID:SCR_009169) Copy
http://www.biostat.umn.edu/~nali/SoftwareListing.html
Software application that implements the PAC (Products of Approximate Conditional) model for estimating recombination rate (entry from Genetic Analysis Software), THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: HOTSPOTTER (RRID:SCR_009238) Copy
http://gaow.github.io/genetic-analysis-software/h-1.html#homoghomogm
Software application (entry from Genetic Analysis Software)
Proper citation: HOMOG/HOMOGM (RRID:SCR_009237) Copy
http://l.web.umkc.edu/liujian/
Software platform that is based on real haplotype data from the HapMap ENCODE project that can simulate heterogeneous populations with various known and controllable structures under the continuous migration model or the discrete model. Moreover, both qualitative and quantitative traits can be simulated using additive genetic model with various genetic parameters designated by users. (entry from Genetic Analysis Software)
Proper citation: HAPSIMU (RRID:SCR_009235) Copy
http://www.people.fas.harvard.edu/~junliu/Haplo/docMain.htm
Software application (entry from Genetic Analysis Software)
Proper citation: HAPLOTYPER (RRID:SCR_009232) Copy
http://www-genepi.med.utah.edu/Genie/
Software application that performs tests of association and transmission disequilibrium (TDT) between genetic markers and traits in studies of arbitrarily-sized families and/or independent individuals using Monte Carlo testing. For dichotomous traits, basic genotype-based or allele-based Chi-square statistics, OR, and a Chi-square trend statistic with user-defined weights, TDT, sib-TDT, combined-TDT are included. For quantitative outcomes, a difference in means test, ANOVA and QTDT are offered. Flexible haplotype testing and meta analysis across multiple centers are available. An automated haplotype building module, hapConstructor, is also offered that data mines multi-locus data for association signals. The Monte Carlo empirical significance assessment accounts for all relatedness between individuals for all tests. (entry from Genetic Analysis Software), THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: GENIE (RRID:SCR_009197) Copy
http://www.well.ox.ac.uk/~mfarrall/twoloc.htm
Software package for analyzing two-locus susceptibility gene models in affected sib-pair data (entry from Genetic Analysis Software)
Proper citation: TWOLOC (RRID:SCR_009230) Copy
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