Searching the RRID Resource Information Network

Our searching services are busy right now. Please try again later

  • Register
X
Forgot Password

If you have forgotten your password you can enter your email here and get a temporary password sent to your email.

X

Leaving Community

Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.

No
Yes

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.

Search

Type in a keyword to search

On page 11 showing 201 ~ 220 out of 548 results
Snippet view Table view Download 548 Result(s)
Click the to add this resource to a Collection

https://ndriresource.org/for-researchers/services-capabilities-sample/htorr

NDRI’s Human Tissue and Organs for Research Resource (HTORR) Program has been funded by the National Institutes of Health (NIH) for over 30 consecutive years to support research programs across multiple disciplines. It is through the HTORR program that NDRI provides academic biomedical investigators with donated normal and diseased human tissues and organs recovered from a diverse donor pool using customized procurement, processing, and preservation and distribution protocols. Our HTORR Program supports academic biomedical research investigators needs by providing: Access to a wide array of human biospecimens from any body system * Customized procurement in a variety of preservation formats including fresh, frozen, and fixed suitable for various analytical techniques * Reduced costs for tissue procurement * Technical support to design your studies utilizing human biospecimens * Letters of support and budgetary information for grant applications

Proper citation: Human Tissue and Organ for Research Resource (HTORR) (RRID:SCR_002859) Copy   


http://cmmt.ubc.ca/facilities-services/mouse-animal-production/

Supplier of mice for research purposes. The service is run by Dr. Elizabeth M. Simpson, Ph.D. and is affiliated with her lab.

Proper citation: CMMT Mouse Animal Production Service (RRID:SCR_016403) Copy   


  • RRID:SCR_008120

    This resource has 50+ mentions.

http://escience.invitrogen.com/ipath/

THIS RESOURCE IS NO LONGER IN SERVICE, documented on August 26, 2016. LINNEA Pathways is a user-friendly comprehensive online resource for gene- or protein-based scientific research. It is based on a total of 248 signaling and metabolic human biological pathway maps created for Invitrogen by GeneGo. The current version of iPath features 225 maps displaying human regulatory and metabolic pathways established in experimental literature produced by MetaCore from GeneGo, Inc. The map objects (proteins, genes, EC functions, and compounds) are connected via metabolic transformations and physical protein interactions, which were assembled by the GeneGo team of experienced annotators, geneticists, and biochemists. The pathways are organized in a vertical fashion following the general signaling path from signaling molecules and membrane receptors, via signal transduction cascades, to transcription factors and their gene targets. Following the natural organization of cellular machinery with highly interconnected pathways and modules, many maps are linked together via hyperlinked box symbols. Such linkage allows the reconstruction of a big picture view of human cell biology., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.

Proper citation: Invitrogen iPath (RRID:SCR_008120) Copy   


http://www.ingenuity.com/

A horizontally and vertically structured database that pulls scientific and medical information and describes it consistently using the Ingenuity Ontology. The Knowledge Base pulls information from journals, public molecular content databases, and textbooks. Data is curated and and integrated into the Knowledge Base .

Proper citation: Ingenuity Pathways Knowledge Base (RRID:SCR_008117) Copy   


http://databases.unesco.org/bioethics/biowebintro.shtml

Bioethics database comprises over 645 bioethics institutions (bioethics committees, commissions, training, research and documentation centres) in over 80 countries, including information on activities and publications. Information is based on replies obtained from a widely distributed questionnaire and has been gathered in cooperation with National Commissions and Permanent Delegations to UNESCO. The Program develops four main action areas: -Intellectual forum -Standard-setting action -Advisory role and capacity-building -Education and awareness raising The Bioethics Program is part of UNESCOs Division of the Ethics of Science and Technology in the Social and Human Sciences Sector. It is primarily responsible for the Secretariat of two advisory bodies: the International Bioethics Committee (IBC), composed of 36 independent experts, and the Intergovernmental Bioethics Committee (IGBC), composed of representatives of 36 Member States. These Committees cooperate to produce advice, recommendations and proposals that each submits to the Director-General for consideration by UNESCOs governing bodies.

Proper citation: Bioethics Institutes Database (RRID:SCR_008173) Copy   


http://www.lamhdi.org/

THIS RESOURCE IS NO LONGER IN SERVICE, it has been replaced by Monarch Initiative. LAMHDI, the initiative to Link Animal Models to Human DIsease, is designed to accelerate the research process by providing biomedical researchers with a simple, comprehensive Web-based resource to find the best animal model for their research. LAMDHI is a free, Web-based, resource to help researchers bridge the gap between bench testing and human trials. It provides a free, unbiased resource that enables scientists to quickly find the best animal models for their research studies. LAMHDI includes mouse data from MGI, the Mouse Genome Informatics website; zebrafish data from ZFIN, the Zebrafish Model Organism Database; rat data from RGD, the Rat Genome Database; yeast data from SGD, the Saccharomyces Genome Database; and fly data from FlyBase. LAMHDI.org is operational today, and data is added regularly. Enhancements are planned to let researchers contribute their knowledge of the animal models available through LAMHDI. The LAMHDI goal is to allow researchers to share information about and access to animal models so they can refine research and testing, and reduce or replace the use of animal models where possible. LAMHDI Database Search: LAMHDI brings together scientifically validated information from various sources to create a composite multi-species database of animal models of human disease. To do this, the LAMHDI database is prepared from a variety of sources. The LAMHDI team takes publicly available data from OMIM, NCBI''s Entrez Gene database, Homologene, and WikiPathways, and builds a mathematical graph (think of it as a map or a web) that links these data together. OMIM is used to link human diseases with specific human genes, and Entrez provides universal identifiers for each of those genes. Human genes are linked to their counterpart genes in other species with Homologene, and those genes are linked to other genes tentatively or authoritatively using the data in WikiPathways. This preparatory work gives LAMHDI a web of human diseases linked to specific human genes, orthologous human genes, homologous genes in other species, and both human and non-human genes involved in specific metabolic pathways associated with those diseases. LAMHDI includes model data that partners provide directly from their data structures. For instance, MGI provides information about mouse models, including a disease for each model, as well as some genetic information (the ID of the model, in fact, identifies one or more genes). ZFIN provides genetic information for each zebrafish model, but no diseases, so zebrafish models are integrated by using the genes as the glue. For instance, a zebrafish model built to feature the zebrafish PKD2 gene would plug into the larger disease-gene map at the node representing the zebrafish PKD2 gene, which is connected to the node representing the human PKD2 gene, which in turn is connected to the node representing the human disease known as polycystic kidney disease. (Some of the partner data LAMHDI receives can even extend the base map. MGI provides a disease for every model, and in some cases this allows the creation of a disease-to-gene relationship in the LAMHDI database that might not already be documented in the OMIM dataset.) With curatorial and model information in hand, LAMHDI runs a lengthy automated process that exhaustively searches for every possible path between each model and each disease in the data, up to a set number of hops, producing for each disease-to-model pair a set of links from the disease to the model. The algorithm avoids circular paths and paths that include more than one disease anywhere in the middle of the path. At the end of this phase, LAMHDI has a comprehensive set of paths representing all the disease-to-model relationships in the data, varying in length from one hop to many hops. Each disease-to-model path is essentially a string of nodes in the data, where each node represents a disease, a gene, a linkage between genes (an orthologue, a homologue, or a pathway connection, referred to as a gene cluster or association), or a model. Each node has a human-friendly label, a set of terms and keywords, and - in most cases - a URL linking the node to the data source where it originated. When a researcher submits a search on the LAMHDI website, LAMHDI searches for the user''s search terms in its precomputed list of all known disease-to-model paths. It looks for the terms not only in the disease and model nodes, but also in every node along each path. The complete set of hits may include multiple paths between any given disease-to-model pair of endpoints. Each of these disease-to-model pair sets is ordered by the number of hops it involves, and the one involving the fewest hops is chosen to represent its respective disease-to-model pair in the search results presented to the user. Results are sorted by scores that represent their matches. The number of hops is one barometer of the strength of the evidence linking the model and the disease; fewer hops indicates the relationship is stronger, more hops indicates it may be weaker. This indicator works best for comparing models from a single partner dataset: MGI explicitly identifies a disease for each mouse model, so there can be disease-to-model hits for mice that involve just one hop. Because ZFIN does not explicitly identify a disease for each model, no zebrafish model will involve fewer than four hops to the nearest disease, from the zebrafish model to a zebrafish gene to a gene cluster to a human gene to a human disease.

Proper citation: LAMHDI: The Initiative to Link Animal Models to Human DIsease (RRID:SCR_008643) Copy   


http://www.BioMedSearch.com

BioMedSearch is a biomedical search engine that contains NIH/PubMed documents, plus a large collection of theses, dissertations, and other publications not found anywhere else for free, making it the most comprehensive free search on the web. :Besides free-form search, users can search based on Author, Journal Title, Publication Date, the Language in which the article was published (many non-English articles have English language abstracts), MeSH (Medical Subject Headings) and more. : The goal of BioMedSearch.com is to provide free access to a massive collection of authoritative documents relating to the biomedical field. Our mission is to make these important works available to the community in a way that is fast and easy, while still offering the advanced features demanded by power users such as portfolios, collaboration features, bibliographical citation export, alerts, and more. Whether you are doctor, scientist, or someone interested in researching a medical topic out of personal interest, BioMedSearch aggregates a vast number of authoritative documents in one place to make finding medical information easy, fast and free.

Proper citation: Biomedical Search: Medical Research and Health Resources (RRID:SCR_008683) Copy   


http://www.lerner.ccf.org/gmi/gmb/

A biorepository is a place where investigators can deposit and store biological material, in this case samples derived from patients. Moreover, the Genomic Medicine Institute (GMI) takes this basic concept and elevates it to make the Genomic Medicine Biorepository (GMB) a full-service processing and banking laboratory that serves as the foundation for evidence-based research for the GMI, the Cleveland Clinic, and our collaborators. The process relies on a team of multi-disciplinary professionals coordinating their efforts in order to streamline medical research. This begins with dedicated physicians and genetic counselors identifying individuals with specific medical conditions indicating the possibility of genetic involvement. Once identified, biological material (e.g. blood, tissue, or saliva) is collected under the care of the patient''s doctor or by our clinicians and sent to the GMB. Once in the lab, the patient and their samples are assigned a unique identifier (to protect the patient''s personal information) and logged into a central database. This unique identifier accompanies all samples processed and banked for that individual. The specimens are then processed into research-relevant samples using proven laboratory techniques and state-of-the-art quality control practices. These samples include the isolation of DNA and RNA from white blood cells for genetic studies; collection of plasma for proteomic studies; and initiated immortalized cell lines from lymphocytes for in-vitro studies and biochemical research. These cell lines are able to be indefinitely stored in cryogenic suspension and are invaluable as a renewable resource for genetic and biochemical research. The GMB also processes genetic material from various tissues (both fresh and archived). Charis Eng, MD, PhD, Chair and Director of the GMI, has been the faculty oversight person of a human biorepository for the last eight years. Since then, our biorepository has received, cataloged, processed, and banked, in excess of 25,000 specimens. These samples are of numerous tissue types from patients and their family members located all over the world. Our biorepository has managed samples that have resulted in more than 150 original peer reviewed articles and greater than $25 million total direct costs in extramural funding over the last four years alone.

Proper citation: Cleveland Clinic Genomic Medicine Biorepository (RRID:SCR_004136) Copy   


https://moffitt.org/research-science/shared-resources/tissue/

A central tissue repository at Moffitt specializing in protocol-driven human tissue collection, storage, processing and dissemination. Tissue Core provides investigators with access to high quality, well-annotated human specimens obtained from representative of the patient populations. The advent of powerful molecular technologies has opened the door to developing more effective treatments of patients with cancer. Access to high quality specimens with associated clinical, treatment, recurrence outcome data will be critical to developing and validating the tests needed for diagnosis and prediction of response to therapy. Since its commencement in 1993, the Tissue Core has collected more than 8,000 cases of human liquid cancers and solid primary and metastatic tumors both malignant and benign with adjacent normal, from variety of sites and diagnoses. Collected samples are mostly remnant tissues obtained from patients undergoing therapeutic surgical procedures at the Center. The core also ensures tissue release compliance with USF-IRB and Privacy Board recommendations. * Protocol driven sample collection, processing and distribution * Collection of sample and patient demographic information. * Nucleic acid extractions from tissue sections, FNA, core biopsies blood and bone marrow. * Histology services: H&E slides, staining, sectioning, paraffin blocks, OCT blocks, sample microdissection * WBC, plasma and serum isolation. * Project development and support: Facility staff provides advice and guidance to researchers.

Proper citation: Moffitt Cancer Center Tissue Core (RRID:SCR_004406) Copy   


http://www.jsps.go.jp/english/

Research and outreach organization dedicated to promoting science, research and education. The society has four main objectives, including building international cooperative networks, enhancing education and research at universities, building evidence-based science-promotion systems and creating diverse world level knowledge.

Proper citation: Japan Society for the Promotion of Science (RRID:SCR_001085) Copy   


  • RRID:SCR_000446

    This resource has 1+ mentions.

http://www.nationalacademies.org/nrc/

Private, non-profit institution dedicated to utilizing knowledge in science, engineering, technology and health to improve government decision making and public policy as well as increase public education and understanding. The council collects, analyzes and shares information and knowledge through activities such as consensus studies, meetings and workshops, and program and research management.

Proper citation: National Research Council (RRID:SCR_000446) Copy   


http://www.karmanos.org/

Center for patient care, education and research on cancer. The institute focuses its research on prevention methods, early detection, treatment and finding cures.

Proper citation: Karmanos Cancer Institute (RRID:SCR_000508) Copy   


http://neuroscience.berkeley.edu/

Portal for UC Berkeley's neuroscience research center. The group focuses on interdisciplinary collaboration between neuroscientists and members of UC Berkeley programs in engineering, chemistry, statistics, and computation. It also runs the neuroscience PhD program.

Proper citation: Helen Wills Neuroscience Institute (RRID:SCR_001991) Copy   


http://biosciencedbc.jp/

The National Bioscience Database Center (NBDC) intends to integrate all databases for life sciences in Japan, by linking each database with expediency to maximize convenience and make the entire system more user-friendly. We aim to focus our attention on the needs of the users of these databases who have all too often been neglected in the past, rather than the needs of the people tasked with the creation of databases. It is important to note that we will continue to honor the independent integrity of each database that will contribute to our endeavor, as we are fully aware that each database was originally crafted for specific purposes and divergent goals. Services: * Database Catalog - A catalog of life science related databases constructed in Japan that are also available in English. Information such as URL, status of the database site (active vs. inactive), database provider, type of data and subjects of the study are contained for each database record. * Life Science Database Cross Search - A service for simultaneous searching across scattered life-science databases, ranging from molecular data to patents and literature. * Life Science Database Archive - maintains and stores the datasets generated by life scientists in Japan in a long-term and stable state as national public goods. The Archive makes it easier for many people to search datasets by metadata in a unified format, and to access and download the datasets with clear terms of use. * Taxonomy Icon - A collection of icons (illustrations) of biological species that is free to use and distribute. There are more than 200 icons of various species including Bacteria, Fungi, Protista, Plantae and Animalia. * GenLibi (Gene Linker to bibliography) - an integrated database of human, mouse and rat genes that includes automatically integrated gene, protein, polymorphism, pathway, phenotype, ortholog/protein sequence information, and manually curated gene function and gene-related or co-occurred Disease/Phenotype and bibliography information. * Allie - A search service for abbreviations and long forms utilized in life sciences. It provides a solution to the issue that many abbreviations are used in the literature, and polysemous or synonymous abbreviations appear frequently, making it difficult to read and understand scientific papers that are not relevant to the reader's expertise. * inMeXes - A search service for English expressions (multiple words) that appear no less than 10 times in PubMed/MEDLINE titles or abstracts. In addition, you can easily access the sentences where the expression was used or other related information by clicking one of the search results. * HOWDY - (Human Organized Whole genome Database) is a database system for retrieving human genome information from 14 public databases by using official symbols and aliases. The information is daily updated by extracting data automatically from the genetic databases and shown with all data having the identifiers in common and linking to one another. * MDeR (the MetaData Element Repository in life sciences) - a web-based tool designed to let you search, compare and view Data Elements. MDeR is based on the ISO/IEC 11179 Part3 (Registry metamodel and basic attributes). * Human Genome Variation Database - A database for accumulating all kinds of human genome variations detected by various experimental techniques. * MEDALS - A portal site that provides information about databases, analysis tools, and the relevant projects, that were conducted with the financial support from the Ministry of Economy, Trade and Industry of Japan.

Proper citation: NBDC - National Bioscience Database Center (RRID:SCR_000814) Copy   


  • RRID:SCR_004516

http://swissbiobank.com/

With expertise in the preservation of biological specimens, Swiss Biobank is a biobank of cell therapy products (stem cells, progenitor). Strategically located in Suisse Romande, the center is accessible 7J/7J, 365 days / year. The laboratories and technology platforms are tailored to international standards. Service is prompt, courteous, and responsive to your needs. The first opportunity to harvest adult stem cells, which is the only type at Swiss Biobank, occurs just after the birth of a baby. The umbilical cord blood and placenta are rich in hematopoietic stem cells and can regenerate all cells in the bloodstream. The cord and placenta tissues themselves contain mesenchymal cells that can be used for the regeneration of connective tissue. The standardized procedures for collecting cord blood units are made ����??����??by the medical staff of the hospital / clinic according to international standards. The sample is transported by a courier Swiss Medical Biobank in which it is prepared and cryo-preserved by qualified personnel within 24 hours. In the case of public biobanking, cells, tissues, organs are donated and can be used with consent of the donor, a third person for transplantation, or as part of clinical research. The HLA (Human Leukocyte Antigen) is a group of proteins on the cell surface, and specific to each individual. This allows the immune system to distinguish our own cells for foreign elements (pathogens) that are likely to be attacked. Histocompatibility between the donor and recipient is of primary importance in organ transplantation, tissues and / or cells, to minimize the chances of rejection. There is one chance in four that two siblings have the same HLA code.

Proper citation: Swiss Biobank (RRID:SCR_004516) Copy   


http://cvr.yorku.ca/home/

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   


http://www.scrm.uzh.ch/biobank.html

The SCRM-CTBB offers state-of-the-art infrastructure and technologies (e.g. cryogenic work bench, semiautomatic cryogenic storage system, uninterrupted cooling chain) and is structured into two areas, including research and a GMP/GCP regulated therapeutic applications. Research: For pre-clinical studies, the SCRM-CTBB provides researchers guidance regarding cell and tissue cryo-preservation, comprising registration, handling, storage and distribution. In order to ensure complete traceability on samples and belonging information all processes are controlled by a Laboratory Information Management System (LIMS) and Quality Assurance (QA) system. The SCRM Biobank is designed to create database that allows connection with other biobanks nationally and internationally. This meta-data file will enable a unique scientific resource for interdisciplinary research. For every new study a contract is established describing the study and the disposition rights. Assistance in writing Biobank Agreements (BAs) and Material Transfer Agreements (MTAs) is provided. Therapeutical applications: As a new feature, apart from research, the SCRM Biobank enables the asservation and preservation of cells and tissues under GMP conditions for later therapeutic use. A special focus will be on a conceptional combination of private and public umbilical cord blood banking (hybrid banking), which allows autologous and/or allogeneic cell applications.

Proper citation: University of Zurich SCRM - Cell-and Tissue Biobank (RRID:SCR_004959) Copy   


http://www.ngfn.de/en/start.html

The program of medical genome research is a large-scale biomedical research project which extends the national genome research net (NGFN) and will be funded by the federal ministry of education and research (BMBF) from 2008-2013. Currently the program includes two fields: * Research ** NGFN-Plus: With the aim on combating diseases that are central to health policy, several hundred researchers are systematically investigating the complex molecular interactions of the human body. They are organized in 26 Integrated Genome Research Networks. * Application ** NGFN-Transfer: The rapid transfer of results from medical genome research into medical and industrial application is the aim of the scientists from research institutes and biomedical enterprises that cooperate in eight Innovation Alliances. AREAS OF DISEASE * Cardiovascular disease * Cancer * Neuronal diseases * Infections and Inflammations * Environmental factors

Proper citation: National Genome Research Network (RRID:SCR_006626) Copy   


  • RRID:SCR_004993

http://www.tmf-ev.de/EnglishSite/Home.aspx

As an umbrella organization for medical research networks, the TMF is responsible for improving the organization and infrastructure of medical research in networked structures. It supports researchers at the various locations in jointly identifying and solving problems of an organizational, legal and technical nature that are often not associated with the particular clinical problem or research focus. The network not only focuses on legal and ethical frameworks for networked medical research but also on the development of IT infrastructure, quality management activities for science-initiated trials and questions on the intermeshing of research and patient care. Under the umbrella organization of the TMF, expert opinions, studies, concepts, requirements specifications, services and tools are created. The products of the cooperation within the TMF are available to the research community. The aims of joint work in the TMF are: * Improvement of medical research in terms of quality, organization and cooperation * Solution of questions spanning networked medical research, e.g. on the collection, processing and exchange of research data * Clarification of the legal and ethical foundations for performing medical research * Issues of quality assurance and quality management * Development and extension of efficient IT infrastructures and their implementation in cross-institutional networked structures * Realization of cross-location solutions * Contributions to sustainable and efficient health research by means of the improved transfer of research findings to patient care

Proper citation: TMF (RRID:SCR_004993) Copy   


  • RRID:SCR_006529

    This resource has 1+ mentions.

http://mimas.ac.uk/

Mimas is an organization of experts. Our role is to support the advancement of knowledge, powering world-class research and teaching. Technology is at the heart of everything we do. As a nationally designated data center, we host a significant number of the UK''s research information assets. But our core expertise is building applications that enable a wide range of users to make the most of this rich resource from students and researchers working with census data to investigate social inequalities, to scientists using satellite imagery to survey and protect our environment. We have a longstanding relationship with JISC, developing services that support teaching, learning and research and strong connections with research councils, especially the Economic and Social Research Council (ESRC). We also have partnerships with commercial groups, universities and colleges, government agencies, and national libraries and archives. * An organization of experts: We''re experts in technological development, information management, user support, training, project management, and applied research. * What we do: We maintain and support quality services, develop applications and software, provide data hosting and storage, and share our learning. * What we stand for: Four main principles guide our activities: commitment to our users, technological experimentation and innovation, communication within our community, and investment in staff.

Proper citation: Mimas (RRID:SCR_006529) Copy   



Can't find your Tool?

We recommend that you click next to the search bar to check some helpful tips on searches and refine your search firstly. Alternatively, please register your tool with the SciCrunch Registry by adding a little information to a web form, logging in will enable users to create a provisional RRID, but it not required to submit.

Can't find the RRID you're searching for? X
  1. Neuroscience Information Framework Resources

    Welcome to the NIF Resources search. From here you can search through a compilation of resources used by NIF and see how data is organized within our community.

  2. Navigation

    You are currently on the Community Resources tab looking through categories and sources that NIF has compiled. You can navigate through those categories from here or change to a different tab to execute your search through. Each tab gives a different perspective on data.

  3. Logging in and Registering

    If you have an account on NIF then you can log in from here to get additional features in NIF such as Collections, Saved Searches, and managing Resources.

  4. Searching

    Here is the search term that is being executed, you can type in anything you want to search for. Some tips to help searching:

    1. Use quotes around phrases you want to match exactly
    2. You can manually AND and OR terms to change how we search between words
    3. You can add "-" to terms to make sure no results return with that term in them (ex. Cerebellum -CA1)
    4. You can add "+" to terms to require they be in the data
    5. Using autocomplete specifies which branch of our semantics you with to search and can help refine your search
  5. Save Your Search

    You can save any searches you perform for quick access to later from here.

  6. Query Expansion

    We recognized your search term and included synonyms and inferred terms along side your term to help get the data you are looking for.

  7. Collections

    If you are logged into NIF you can add data records to your collections to create custom spreadsheets across multiple sources of data.

  8. Sources

    Here are the sources that were queried against in your search that you can investigate further.

  9. Categories

    Here are the categories present within NIF that you can filter your data on

  10. Subcategories

    Here are the subcategories present within this category that you can filter your data on

  11. Further Questions

    If you have any further questions please check out our FAQs Page to ask questions and see our tutorials. Click this button to view this tutorial again.

X