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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://img.jgi.doe.gov/cgi-bin/m/main.cgi
Resource for analysis and annotation of genome and metagenome datasets in comprehensive comparative context. IMG provides users with tools for analyzing publicly available genome datasets and metagenome datasets.
Proper citation: IMG System (RRID:SCR_002965) Copy
http://www.virtualflybrain.org
An interactive tool for neurobiologists to explore the detailed neuroanatomy, neuron connectivity and gene expression of the adult Drosophila melanogaster brain.
Proper citation: Virtual Fly Brain (RRID:SCR_004229) Copy
http://www.portugene.com/SPInDel/SPInDel_webworkbench.html
A multifunctional workbench for species identification using insertion/deletion variants. The SPInDel workbench provides a step-by-step environment for the alignment of target sequences, selection of informative hypervariable regions, design of PCR primers and the statistical validation of the species-identification process. It includes a large dataset comprising nearly 1,800 numeric profiles for the identification of eukaryotic, prokaryotic and viral species.
Proper citation: SPInDel (RRID:SCR_004509) Copy
Project to adapt model of open source software distributions to address technical limitations of data sharing and develop all components of data distribution. Builds on top of git-annex and extends it with intuitive command line interface. Enables users to operate on data using familiar concepts, such as files and directories, while transparently managing data access and authorization with underlying hosting providers. Can create DataLad datasets using any data files published on the web.
Proper citation: DataLad (RRID:SCR_003931) Copy
Independent network and system used to collect epidemiological information for clinical research from family paediatricians in Italy. It is based on the transmission of specific data from computerised clinical files. Such data is collected anonymously by a central server in Padua, where it is validated and elaborated.
Proper citation: Pedianet (RRID:SCR_004107) Copy
http://www.roslin.ed.ac.uk/about-roslin/
The world''s largest collection of tick cell lines, enabling scientists to carry out advanced research. This biobank is establishing a collection of all the continuous cell lines derived from ixodid and argasid ticks of medical and veterinary importance available worldwide now and in future. Ticks are blood feeding arthropods which transmit many human and animal diseases. Research into prevention and cure of these diseases, which are caused by viruses, bacteria and protozoa, is greatly assisted by the use of cell culture systems which enable study of both how tick cells function, and how and why ticks transmit these disease-causing pathogens. Cell lines will always be shipped to recipient laboratories as growing cultures, since we cannot guarantee successful resuscitation of frozen stabilates. Tick cells in culture can tolerate the range of temperatures experienced during transit by air for up to a week. Training: We will provide training in tick cell line care and maintenance. This is an essential component of successful transfer of tick cells to, and their establishment in, laboratories with little or no previous experience of tick cell culture. Recipient scientists (preferably the person who will actually look after the cells) can visit the biobank for between 2 days and 2 weeks, depending on their level of previous experience, to be trained in the specific approach and methods for tick cell cultivation. Establishment of new cell lines: In response to requests and on receipt of suitable starting material (engorged female or moulting nymphal ticks), we will attempt to establish new cell lines from tick species or strains which are not already represented in the collection. Deposition of new tick cell lines: We invite researchers anywhere in the world who have established new tick cell lines to deposit samples for safekeeping free of charge and, if requested, for distribution alongside the existing biobank portfolio.
Proper citation: Roslin Wellcome Trust Tick Cell Biobank (RRID:SCR_004228) Copy
http://www.nitrc.org/projects/unc_brain_atlas
Human brain atlases for adult, pediatric and elderly populations, by iterative joint deformable registration of training datasets into a single unbiased average image. Atlases packages include T1-weighted images, tissue priors (WM,GM,CSF), lobar parcellation maps and subcortical structures. Current available atlases: * Adult atlas: Symmetric atlas generated from 50+ healthy adult subjects (20-59 year old). * UNC-MNI Pediatric 1-year-old atlas: Symmetric atlas generated from 104 1-year-old subjects, combining children at high familial risk of autism and controls. * Pediatric 4-year-old atlas: Symmetric atlas generated from 10 4-year-old healthy subjects. * Elderly atlas: Atlas generated from 27 healthy elderly subjects (60+ years old). Additional information and acknowledgment for their usage can be found by clicking on the release notes.
Proper citation: UNC Human Brain Atlas (RRID:SCR_002606) Copy
Stem cell banking is a unique opportunity to store the precious building blocks of the human body; cord blood, cord tissue and fat tissue are just some sources of stem cells ready to provide the foundation for more than 70 treatments of blood, blood related diseases and future applications in regenerative medicine. To not consider the storage or donation of these precious stem cells could be a missed opportunity! Cryo-Save is officially recognized as the largest family stem cell bank in Europe. With more than 180,000 samples stored and four fully-owned storage facilities throughout the world, Cryo-Save has over ten years'' experience and state-of-the-art technical know-how, providing the basis for a strong and reliable organization. An ethical approach, scientific professionalism and customer-focused care are the core elements of our daily activities, as we strive to be an active player in life-science development in over 40 countries. Our company was established in 2000, is headquartered in the Netherlands and successfully active in 40 countries across four continents. We are officially accredited by the regulatory authorities and set the highest quality standards in everything we do. We follow a dual storage system, meaning that the stem cells are stored independently in two separate storage tanks within our state-of-the-art facility. Our dedication to research in collaboration with universities, physicians and stem cell scientists has put us at the forefront of technological developments.
Proper citation: Cryo-Save (RRID:SCR_004504) Copy
http://discover.nci.nih.gov/gominer/
GoMiner is a tool for biological interpretation of "omic" data including data from gene expression microarrays. Omic experiments often generate lists of dozens or hundreds of genes that differ in expression between samples, raising the question, What does it all mean biologically? To answer this question, GoMiner leverages the Gene Ontology (GO) to identify the biological processes, functions and components represented in these lists. Instead of analyzing microarray results with a gene-by-gene approach, GoMiner classifies the genes into biologically coherent categories and assesses these categories. The insights gained through GoMiner can generate hypotheses to guide additional research. GoMiner displays the genes within the framework of the Gene Ontology hierarchy in two ways: * In the form of a tree, similar to that in AmiGO * In the form of a "Directed Acyclic Graph" (DAG) The program also provides: * Quantitative and statistical analysis * Seamless integration with important public databases GoMiner uses the databases provided by the GO Consortium. These databases combine information from a number of different consortium participants, include information from many different organisms and data sources, and are referenced using a variety of different gene product identification approaches.
Proper citation: GoMiner (RRID:SCR_002360) Copy
http://www.umassmed.edu/MHSCB/index.aspx
THIS RESOURCE IS NO LONGER IN SERVICE, documented August 31, 2016. Stem cell research, particularly human embryonic stem cell (hESC) research, holds tremendous promise to discover therapeutic options and perhaps cures for insidious diseases such as cancer, juvenile diabetes, Alzheimer's and Parkinson's. The Massachusetts Human Stem Cell Bank provides the biomedical research community with expertly maintained human ES (hES) and reprogrammed (iPS) cell lines to facilitate studies into the properties and potential therapeutic applications of pluripotent stem cells. The Bank cultures, characterizes and distributes quality controlled hES and iPS cell lines derived in Massachusetts and beyond. The Bank is a 15,000 square foot facility that contains research and training space for visiting investigators. In addition, the Education and Training division provides technical training and programs to educate the community.
Proper citation: Massachusetts Human Stem Cell Bank (RRID:SCR_004141) Copy
The Centre for Vision Research focuses on interdisciplinary research into human and machine vision and visual processes, into vision's interactions with other senses and with motor and cognitive processes, and in applications such as visually-guided robotics or clinical diagnosis and treatment. The Centre for Vision Research includes the following major research themes: - Human Visual Performance - Visual Human-Computer Interaction, Graphics and Virtual Reality - Visual Psychophysics - Eye Movements and Hand-Eye Coordination - Computational Modeling and Computer Vision - Electrophysiology - Clinical and Developmental Studies - Brain Imaging
Proper citation: Centre for Vision Research (RRID:SCR_002879) Copy
This is a facility for UK-based research into leukemia and other related disorders. The Bank contains viable cells and DNA from children diagnosed with acute leukemia. (diagnostic, treatment and relapse samples) and also HLA- typed normal cord blood donations. Samples can only be obtained from the Cell Bank for approved peer-reviewed and fully costed research projects. To view further information about the Cell Bank, or for instruction on how to apply for samples, please register.
Proper citation: Childhood Leukaemia Cell Bank (RRID:SCR_004135) Copy
Institute to advance genomics in support of the DOE missions related to clean energy generation and environmental characterization and cleanup. Supported by the DOE Office of Science, the DOE JGI unites the expertise at Lawrence Berkeley National Laboratory, Lawrence Livermore National Laboratory, and the HudsonAlpha Institute for Biotechnology. The facility provides integrated high-throughput sequencing and computational analysis that enable systems-based scientific approaches to these challenges.
Proper citation: DOE Joint Genome Institute (RRID:SCR_003045) Copy
The Lymphoma Research Foundation (LRF), in collaboration with American Type Culture Collection (ATCC), has created a Mantle Cell Lymphoma (MCL) Cell Bank. The Cell Bank is a collection of various MCL lines created by scientists from all over the world. The idea for the Cell Bank was generated by the scientists that make up the MCL Consortium (MCLC). It was created to provide a single, centralized location where scientists can easily acquire high-quality, well-characterized MCL cell lines in an effort to accelerate discoveries in MCL. LRF has acquired 8 different MCL cell lines (July 2010): Mino, Z-138, JVM-2, JVM-13, REC-1, NCEB-1, JeKo-1, and Maver-1. The Cell Bank is chaired by Dr. Owen O''Connor of New York University Langone Medical Center and is housed at ATCC, the world''s largest biological resource center and the most comprehensive source of reference cultures and reagents used by researchers in the academic and industry laboratories. The Cell Bank was made possible by the scientists who generously agreed to share their resources, including, Dr. Elias Campo, Dr. Zeev Estrov, Dr. Richard Ford, Dr. Junia Melo and Dr. Alberto Zamo.
Proper citation: Mantle Cell Lymphoma Cell Bank (RRID:SCR_004379) Copy
http://www.stanford.edu/group/nolan/retroviral_systems/phx.html
A second-generation retrovirus producer lines for the generation of helper free ecotropic and amphotropic retroviruses. The lines are based on the 293T cell line (a human embryonic kidney line transformed with adenovirus E1a and carrying a temperature sensitive T antigen co-selected with neomycin). The unique feature of this cell line is that it is highly transfectable with either calcium phosphate mediated transfection or lipid-based transfection protocols-- up to 50% or higher of cells can be transiently transfected. The lines were created by placing into 293T cells constructs capable of producing gag-pol, and envelope protein for ecotropic and amphotropic viruses. The lines offered advantages over previous stable systems in that virus can be produced in just a few days. Academic and non-profit laboratories may obtain the Phoenix cells from either Allele Biotechnology or the National Gene Vector Bank. The vectors may be obtained from Addgene. They are no longer distributing these reagents from the lab.
Proper citation: Phoenix (RRID:SCR_003163) Copy
To support Drug Development Tools development efforts, FDA established qualification programs for animal models for use under Animal Rule, biomarkers, and clinical outcome assessments. DDTs are methods, materials, or measures that have potential to facilitate drug development. Examples of DDTs may include, but are not limited to biomarker2 used for clinical trial enrichment, clinical outcome assessment used to evaluate clinical benefit, and animal model used for efficacy testing of medical countermeasures under regulations commonly referred to as Animal Rule3.
Proper citation: Drug Development Tools Qualification Programs (RRID:SCR_003714) Copy
A US sperm bank that offers superior donor sperm and sperm banking services, including sperm storage and embryo storage. We provide the highest quality in the industry as one of the few sperm banks fully accredited by the American Association of Tissue Banks (AATB). Cryogenic Laboratories is fully compliant with FDA regulations. Extensive donor Information is downloaded FREE for ALL sperm donors. Searching for a donor is fun, easy and free of charge. Most other sperm banks require you to pay for each donor information product you view. So look and listen for free 24/7. Childhood photos, audio clips, medical and personal profiles are all free. Monthly specials are also there to make the process easier.
Proper citation: Cryogenic Laboratories, Inc (RRID:SCR_003558) Copy
http://www.jainlab.org/downloads.html
Automatic software program for microarray image quantification.
Proper citation: UCSF Spot (RRID:SCR_002985) Copy
http://lab.rockefeller.edu/casanova/HGC
Data set containing a gene-specific connectome file for each human gene and computer programs for ranking lists of genes within a gene-specific connectome, clustering and plotting the genes by the functional genomic alignment (FGA) approach, and generating gene-specific connectomes. The programs were developed and tested on Mac and Linux systems. The external software required for running these programs is open-source and free of charge. The HGC is the set of all biologically plausible routes, distances, and degrees of separation between all pairs of human genes. A gene-specific connectome contains the set of all available human genes sorted on the basis of their predicted biological proximity to the specific gene of interest. The HGC is a powerful approach for human genotype-phenotype high-throughput studies, for which it can be used to rank any list of genes within a gene-specific connectome for an experimentally validated core gene. Functional genomic alignment (FGA) is equivalent to traditional multiple sequence alignment (MSA), except that it clusters genes in trees on the basis of the functional biological distance between them predicted by HGC, rather than on the basis of molecular evolutionary genetic distance. This method is therefore more suitable for disease and phenotypic studies.
Proper citation: Human Gene Connectome (RRID:SCR_002628) Copy
http://ccr.coriell.org/Sections/Collections/LMS/?SsId=17
The Leiomyosarcoma Cell and DNA Repository has been established with an award from the National Leiomyosarcoma Foundation. This foundation provides leadership in supporting research of Leiomyosarcoma, improving treatment outcomes of those affected by this disease as well as fostering awareness in the medical community and general public. The resources available include highly-characterized, viable, and contaminant-free cell cultures and high quality, well-characterized DNA samples derived from these cultures, both subjected to rigorous quality control. Leiomyosarcoma is a rare form of cancer, which affects about four people in every million. It spreads through the blood stream and can affect the lungs, liver, blood vessels, or any other soft tissue in the body. Presently there is no cure, only remission if it can be attained, and this rare cancer can reappear anywhere at any time. Because of its rarity, few doctors know how to treat it and it attracts very little research. Cell cultures or DNA are distributed only to qualified professional persons who are associated with recognized research, medical, educational, or industrial organizations engaged in health-related research or health delivery. Before cell cultures or DNA samples can be shipped, the principal investigator must sign an ASSURANCE FORM (Material Transfer Agreement) detailing the terms and conditions of sale. This agreement must be renewed annually. In addition, before receiving lymphoblast or other virus-transformed cell cultures users should read the MINIMUM SAFETY GUIDELINES RECOMMENDED FOR WORKING WITH HUMAN CELL CULTURES.
Proper citation: Leiomyosarcoma Cell and DNA Repository (RRID:SCR_004686) Copy
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